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nitrazepam

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Description

Nitrazepam is a benzodiazepine medication used primarily to treat insomnia and anxiety. It was first synthesized in 1962 and introduced to the market in 1965. It works by enhancing the effects of the neurotransmitter gamma-aminobutyric acid (GABA) in the brain, which has calming and sedative effects. Nitrazepam is a highly effective hypnotic, but its use is associated with a number of potential side effects, including dependence, tolerance, withdrawal symptoms, and memory impairment. Research on nitrazepam focuses on understanding its pharmacological properties, developing safer and more effective alternatives, and investigating its potential therapeutic uses in conditions like epilepsy and neuropathic pain. '

Nitrazepam: A benzodiazepine derivative used as an anticonvulsant and hypnotic. [Medical Subject Headings (MeSH), National Library of Medicine, extracted Dec-2023]

nitrazepam : A 1,4-benzodiazepinone that is 1,3-dihydro-2H-1,4-benzodiazepin-2-one which is substituted at positions 5 and 7 by phenyl and nitro groups, respectively. It is used as a hypnotic for the short-term management of insomnia and for the treatment of epileptic spasms in infants (West's syndrome). [Chemical Entities of Biological Interest (ChEBI), Hastings J, Owen G, Dekker A, Ennis M, Kale N, Muthukrishnan V, Turner S, Swainston N, Mendes P, Steinbeck C. (2016). ChEBI in 2016: Improved services and an expanding collection of metabolites. Nucleic Acids Res]

Cross-References

ID SourceID
PubMed CID4506
CHEMBL ID13209
CHEBI ID7581
SCHEMBL ID35202
MeSH IDM0014875

Synonyms (151)

Synonym
somnite
AC-4537
HMS3393F19
OPREA1_476234
7-nitro-5-phenyl-1,3-dihydro-2h-1,4-benzodiazepin-2-one
wln: t67 gmv jn ihj cnw kr
mogadone
sonebon
nitrenpax
apodorm
dumolid
s 2000
mogadan
epibenzalin
surem
nitrados
remnos
neozepam
epinelbon
ro 5-3059
ro 53-60
7-nitro-5-phenyl-2,4-benzodiazepin-2-one
neuchlonic
isopropylacetate/nitrazepam
imesont
magadon
2h-1, 1,3-dihydro-7-nitro-5-phenyl-
7-nitro-1,4-benzodiazepin-2-one
calsmin
imeson
trazenin
cerson
la 1
pacisyn
nelmat
eunoctin
hipsal
nitrempax
nsc-58775
mogadon
megadon
hipnax
PDSP2_000120
mitidin
ccris 1931
dea no. 2834
gerson
unisomnia
nitrazepamum [inn-latin]
la 1 (van)
sonnolin
paxisyn
somitran
brn 0757185
eatan n
dormo-puren
ibrovek
dormicum (anticonvulsant)
relact
dormin-5
pelson
nelbon
radedorm
nsc 58775
persopit
einecs 205-665-2
2,3-dihydro-7-nitro-5-phenyl-1h-1,4-benzodiazepin-2-on
nitrazepam [usan:inn:ban:jan]
2h-1,4-benzodiazepin-2-one, 1,3-dihydro-7-nitro-5-phenyl-
PDSP1_000120
ro 4-5360
nsc58775
benzalin
1,3-dihydro-7-nitro-5-phenyl-2h-1,4-benzodiazepin-2-one
7-nitro-5-phenyl-1,3-dihydro-1,4-benzodiazepin-2-one
eatan
calsamin
CHEMDIV1_022312
nitrazepam
C07487
146-22-5
7-nitro-1,3-dihydro-5-phenyl-2h-1,4-benzodiazepin-2-one
DB01595
NCGC00159358-02
2,3-dihydro-7-nitro-5-phenyl-1h-1,4-benzodiazepin-2-one
n-desmethylnimetazepam
7-nitro-5-phenyl-2,3-dihydro-1h-1,4-benzodiazepin-2-one
benzalin (tn)
nitrazepam (tn)
D00531
nitrazepam (jp17/usan/inn)
smr000058302
MLS001304053
HMS2051F19
STK806322
kjonhkayojnzec-uhfffaoysa-
inchi=1/c15h11n3o3/c19-14-9-16-15(10-4-2-1-3-5-10)12-8-11(18(20)21)6-7-13(12)17-14/h1-8h,9h2,(h,17,19)
CHEMBL13209 ,
ro-5-3059
ro-45360
n05cd02
ro-53059
chebi:7581 ,
nitrazepamum
ro-4-5360
HMS650G04
AKOS002254707
bdbm50020856
7-nitro-5-phenyl-1,3-dihydro-benzo[e][1,4]diazepin-2-one
7-nitro-5-phenyl-1h-benzo[e][1,4]diazepin-2(3h)-one
A808471
tox21_111601
dtxsid5023372 ,
dtxcid803372
cas-146-22-5
MLS001424061
HMS2272G03
CCG-100977
noctesed
somnibel
eunoktin
ipersed
somnased
1, 3-dihydro-7-nitro-5-phenyl-2h-1,4-benzodiazepin-2-one
nitravet
unii-9clv70w7hs
9clv70w7hs ,
5-24-04-00344 (beilstein handbook reference)
AB02342
NC00227
SCHEMBL35202
NCGC00159358-03
tox21_111601_1
nitrazepamum [who-ip latin]
nitrazepam [who-ip]
nitrazepam [mart.]
nitrazepam [inn]
nitrazepam [mi]
nitrazepam [jan]
nitrazepam [usan]
nitrazepam [ep monograph]
nitrazepam [who-dd]
1,3-dihydro-7-nitro-5-phenyl-2h-1,4-benzodiazepine-2-one
7-nitro-5-phenyl-1,3-dihydro-2h-1,4-benzodiazepin-2-one #
nitrazepam, british pharmacopoeia (bp) reference standard
nitrazepam, european pharmacopoeia (ep) reference standard
nitrazepam 1.0 mg/ml in acetonitrile
nitrazepam 0.1 mg/ml in acetonitrile
(z)-7-nitro-5-phenyl-1h-benzo[e][1,4]diazepin-2(3h)-one
Q410078
nitrazepam, 1mg/ml in acetonitrile

Research Excerpts

Overview

Nitrazepam (NZP) is a hypnotic agent that rarely causes liver injuries in humans and teratogenicity in rodents. It is an effective anticonvulsant in this small cohort of children with medically refractory infantile spasms and the Lennox-Gastaut syndrome.

ExcerptReferenceRelevance
"Nitrazepam is a safe and feasible treatment alternative in children with resistant WS resulting in persistent cessation of spasms and electroclinical response in nearly half of patients."( Effectiveness and Safety of Nitrazepam in Children with Resistant West Syndrome.
Kumar, A; Madaan, P; Pattanaik, S; Sahu, JK; Saini, AG; Saini, L; Sankhyan, N; Suthar, R; Zahan, S, 2022
)
2.46
"Nitrazepam (NZP) is a hypnotic agent that rarely causes liver injuries in humans and teratogenicity in rodents. "( Identification of enzymes responsible for nitrazepam metabolism and toxicity in human.
Fukami, T; Gotoh, S; Konishi, K; Nakajima, M, 2017
)
2.16
"Nitrazepam is an effective anticonvulsant in this small cohort of children with medically refractory infantile spasms and the Lennox-Gastaut syndrome, resulting in a 25% response rate and only modest side effects."( Nitrazepam for refractory infantile spasms and the Lennox-Gastaut syndrome.
Chamberlain, MC, 1996
)
2.46
"Nitrazepam is a valuable drug, being one of the often used minor tranquillizers in psychotherapy. "( Preparation and investigation of inclusion complexes containing nitrazepam.
Czékus, G; Jung, N; Kata, M,
)
1.81

Actions

Nitrazepam was found to produce various types of malformations, i.e., exencephaly, cleft palate, micrognathia, short or kinky tail and limb reduction defects. NitrazepAm and diazepam inhibit xanthine oxidase activity within concentration range between 10(-8) M (to 51.5% and 33.2% respectively)

ExcerptReferenceRelevance
"Nitrazepam was found to produce various types of malformations, i.e., exencephaly, cleft palate, micrognathia, short or kinky tail and limb reduction defects."( Teratogenic effects of nitrazepam in rats.
Nakagawa, M; Sakai, T; Takeno, S, 1990
)
1.31
"Nitrazepam and diazepam inhibit xanthine oxidase activity within concentration range between 10(-8) M (to 51.5% and 33.2%, respectively), and 10(-4) M (practically completely)."( [Effect of tranquilizers of the 1,4-benzodiazepine series on the xanthine oxidase activity of the rat brain].
Karelin, AA; Korotkina, RN; Papin, AA; Voronina, TA, 1988
)
1

Toxicity

Nitrazepam is a safe and feasible treatment alternative in children with resistant WS resulting in persistent cessation of spasms and electroclinical response in nearly half of patients. These results indicate that histopathological examination is the most reliable approach to detect male reproductive adverse effects.

ExcerptReferenceRelevance
"1 To assess the potential hazards of nitrazepam therapy of insomnia in the elderly, adverse reactions to nitrazepam were studied in 2111 hospitalized medical patients who received the drug."( Toxicity of nitrazepam in the elderly: a report from the Boston Collaborative Drug Surveillance Program.
Allen, MD; Greenblatt, DJ, 1978
)
0.91
" Safe discontinuation rates of CZP were estimated by comparing these patients with 23 patients without CZP discontinuation seizures."( Seizures with clonazepam: discontinuation and suggestions for safe discontinuation rates in children.
Sugai, K,
)
0.13
"The main focus of this study is the optimal administration period concerning toxic effects on male fertility in rats."( Male reproductive toxicity study of nitrazepam in rats.
Masuda, H; Masuda, N; Sanbuissho, A; Suzuki, K; Terada, S; Teranishi, M, 1995
)
0.57
" These results indicate that histopathological examination is the most reliable approach to detect male reproductive adverse effects induced by nitrazepam rather than using parameters from mating trials."( Potential parameters of male reproductive toxicity: reproductive performance, histopathology and sperm evaluation in SD rats given nitrazepam.
Hara, K; Ikeuchi, K; Kanamori, S; Kawai, M; Kishi, K; Maruyama, T; Sasaki, K, 1995
)
0.7
" Children with WS resistant to standard therapy were enrolled within 7 d of initiation of nitrazepam and prospectively followed-up for cessation of spasms and adverse events."( Effectiveness and Safety of Nitrazepam in Children with Resistant West Syndrome.
Kumar, A; Madaan, P; Pattanaik, S; Sahu, JK; Saini, AG; Saini, L; Sankhyan, N; Suthar, R; Zahan, S, 2022
)
1.24
" Drowsiness, sialorrhea, and decreased appetite were the most commonly observed adverse events."( Effectiveness and Safety of Nitrazepam in Children with Resistant West Syndrome.
Kumar, A; Madaan, P; Pattanaik, S; Sahu, JK; Saini, AG; Saini, L; Sankhyan, N; Suthar, R; Zahan, S, 2022
)
1.02
"Nitrazepam is a safe and feasible treatment alternative in children with resistant WS resulting in persistent cessation of spasms and electroclinical response in nearly half of patients."( Effectiveness and Safety of Nitrazepam in Children with Resistant West Syndrome.
Kumar, A; Madaan, P; Pattanaik, S; Sahu, JK; Saini, AG; Saini, L; Sankhyan, N; Suthar, R; Zahan, S, 2022
)
2.46

Pharmacokinetics

In state of tolerance to the sedative effect of nitrazepam (NTZ) its pharmacokinetic properties are changed. The absorption is slowed down, the elimination, in contrast, is accelerated due to the rapid biotransformation. Cimetidine had no effect on nitrazapam absorption kinetics.

ExcerptReferenceRelevance
" The pharmacokinetic parameters were evaluated manually or by AUTOAN-program in serum, and manually in saliva."( Pharmacokinetics of nitrazepam in saliva and serum after a single oral dose.
Allonen, H; Kangas, L; Lammintausta, R; Pekkarinen, A; Salonen, M, 1979
)
0.58
" The method was applied to pharmacokinetic and bioavailability studies of nitrazepam in humans."( Assay of underivatized intrazepam and clonazepam in plasma by capillary gas chromatography applied to pharmacokinetic and bioavailability studies in humans.
Bracht, H; Breimer, DD; de Boer, AG; Röst-Kaiser, J, 1978
)
0.49
" The drug inhibited the inhibited the increased response of the rats to the anticonvulsive action of nitrazepam and prevented the pharmacokinetic disturbances appearing in the course of radiation disease."( Pharmacodynamics and pharmacokinetics of psycholeptic drugs in the course of radiation disease. Effect of premedication with metanabol on dynamics and kinetics of nitrazepam.
Cenajek, D; Chodera, A; Okulicz-Kozaryn, I; Wójciakowa, Z,
)
0.54
" Patients and control subjects did not differ significantly in nitrazepam elimination half-life (32 vs."( Nitrazepam clearance unimpaired in patients with renal insufficiency.
Greenblatt, DJ; Oberem, U; Ochs, HR, 1992
)
1.97
" In order to determine the endoplasmatic reticulum enzyme function, 6-beta-hydroxycortisol excretion and antipyrine pharmacokinetic parameters were evaluated."( Comparative effects of rifampin and/or probenecid on the pharmacokinetics of temazepam and nitrazepam.
Brockmeyer, NH; Goos, M; Klimek, K; Mertins, L; Ohnhaus, EE, 1990
)
0.5
"The elimination half-life of chlordiazepoxide and diazepam increases with age, and this may cause prolongation of action after a single dose and delayed accumulation on multiple dosing in elderly patients."( [Pharmacokinetic of benzodiazepines in old age].
Vozeh, S, 1981
)
0.26
"Knowledge of the pharmacokinetic properties of the benzodiazepines is playing an increasingly important role in their use during pregnancy, labour and lactation."( Use of benzodiazepines during pregnancy, labour and lactation, with particular reference to pharmacokinetic considerations.
Kanto, JH, 1982
)
0.26
" Potential pharmacokinetic determinants of duration of drug action are dose, lipid solubility and elimination half-life."( Introduction to the pharmacokinetics and pharmacodynamics of benzodiazepines.
McKenzie, SG, 1983
)
0.27
"Large differences exist among the various benzodiazepines with regard to their pharmacokinetic properties and metabolism in man."( Pharmacokinetics of benzodiazepines: metabolic pathways and plasma level profiles.
Breimer, DD; Jochemsen, R, 1984
)
0.27
"In state of tolerance to the sedative effect of nitrazepam (NTZ) its pharmacokinetic properties are changed: the absorption is slowed down, the elimination, in contrast, is accelerated due to the rapid biotransformation."( Pharmacokinetic aspects of habituation to benzodiazepines.
Cenajek, D; Chodera, A; Nowakowska, E; Szczawińska, K,
)
0.39
" Cimetidine had no effect on nitrazepam absorption kinetics, since peak serum nitrazepam concentration and time of peak concentration were not altered."( Cimetidine impairs nitrazepam clearance.
Abernethy, DR; Greenblatt, DJ; Gugler, R; Locniskar, A; Müntefering, G; Ochs, HR, 1983
)
0.89
" There were no pharmacokinetic differences between the Japanese and white subjects."( Pharmacodynamics and pharmacokinetics of a single oral dose of nitrazepam in healthy volunteers: an interethnic comparative study between Japanese and European volunteers.
Altorf, B; Cohen, AF; de Visser, SJ; Kroon, JM; Meinders, AJ; Nanhekhan, LV; Pieters, MS; Schoemaker, RC; Uchida, E; Uchida, N; van Gerven, JM; Yasuda, K; Yasuhara, H, 1998
)
0.54
" pharmacokinetic data on 670 drugs representing, to our knowledge, the largest publicly available set of human clinical pharmacokinetic data."( Trend analysis of a database of intravenous pharmacokinetic parameters in humans for 670 drug compounds.
Lombardo, F; Obach, RS; Waters, NJ, 2008
)
0.35

Compound-Compound Interactions

ExcerptReferenceRelevance
" The present comparative study was performed to examine the effects of the oral administration of Ro 41-3696, nitrazepam or zopiclone alone and in combination with a 'social' dose of ethanol on mouse hippocampal EEG."( Changes in mouse hippocampal EEG characteristics after oral administration of Ro 41-3696, nitrazepam, or zopiclone alone and in combination with ethanol.
Himori, N; Tanaka, Y; Tsuboi, M, 1994
)
0.72

Bioavailability

The method was applied to pharmacokinetic and bioavailability studies of nitrazepam in humans. Concomitant food intake had no apparent influence on the absorption rate. There was no significant difference in nitrazapam kinetics between young and elderly subjects.

ExcerptReferenceRelevance
" The method was applied to pharmacokinetic and bioavailability studies of nitrazepam in humans."( Assay of underivatized intrazepam and clonazepam in plasma by capillary gas chromatography applied to pharmacokinetic and bioavailability studies in humans.
Bracht, H; Breimer, DD; de Boer, AG; Röst-Kaiser, J, 1978
)
0.49
" 2-(5-Cyano-N-methyl-3,5-dimethyl-3-aza-pentanamido)-5-nitrobenzophenone, administered orally to the rat, is well absorbed and extensively metabolized with only minimal quantities of parent compound detected in plasma, bile or urine."( The metabolism of a substituted aminoacetamido-benzophenone and cyclization to the corresponding benzodiazepine in the rat in vivo.
Illing, HP; Johnson, P; Rising, PA; Yeomans, MA, 1977
)
0.26
" The method has been used for measuring serum concentrations of nitrazepam in bioavailability studies on subjects given a single dose of nitrazepam tablets."( Determination of nitrazepam in serum by gas-liquid chromatography. Application in bioavailability studies.
Jensen, KM, 1975
)
0.83
" Pharmacokinetics and bioavailability are certainly altered by such modifications, usually in a positive sense."( Peptide derivatives as prodrugs.
Thomas, WA, 1986
)
0.27
" Concomitant food intake had no apparent influence on the absorption rate or on the bioavailability of nitrazepam in the young subjects, and there was no significant difference in nitrazepam kinetics between young and elderly subjects."( Influence of food and of age on nitrazepam kinetics.
Holm, V; Melander, A; Wåhlin-Boll, E, 1982
)
0.76
"The quantitative structure-bioavailability relationship of 232 structurally diverse drugs was studied to evaluate the feasibility of constructing a predictive model for the human oral bioavailability of prospective new medicinal agents."( QSAR model for drug human oral bioavailability.
Topliss, JG; Yoshida, F, 2000
)
0.31
"Light food increased the bioavailability of quazepam and affected psychomotor performance."( Different effects of light food on pharmacokinetics and pharmacodynamics of three benzodiazepines, quazepam, nitrazepam and diazepam.
Fujita, T; Hasunuma, T; Kumagai, Y; Maeda, M; Majima, M; Otani, Y; Yamazaki, A; Yokota, S, 2007
)
0.55
" Human oral bioavailability is an important pharmacokinetic property, which is directly related to the amount of drug available in the systemic circulation to exert pharmacological and therapeutic effects."( Hologram QSAR model for the prediction of human oral bioavailability.
Andricopulo, AD; Moda, TL; Montanari, CA, 2007
)
0.34
"Oral bioavailability (F) is a product of fraction absorbed (Fa), fraction escaping gut-wall elimination (Fg), and fraction escaping hepatic elimination (Fh)."( Physicochemical space for optimum oral bioavailability: contribution of human intestinal absorption and first-pass elimination.
Chang, G; El-Kattan, A; Miller, HR; Obach, RS; Rotter, C; Steyn, SJ; Troutman, MD; Varma, MV, 2010
)
0.36
" Nitrazepam molecules incorporated in micelles show modified bioavailability (depo effect, higher permeability, etc."( Determination and importance of temperature dependence of retention coefficient (RPHPLC) in QSAR model of nitrazepams' partition coefficient in bile acid micelles.
Lalić, M; Pilipović, A; Popović, J; Posa, M, 2011
)
1.49
"The ATP-binding cassette transporter P-glycoprotein (P-gp) is known to limit both brain penetration and oral bioavailability of many chemotherapy drugs."( A High-Throughput Screen of a Library of Therapeutics Identifies Cytotoxic Substrates of P-glycoprotein.
Ambudkar, SV; Brimacombe, KR; Chen, L; Gottesman, MM; Guha, R; Hall, MD; Klumpp-Thomas, C; Lee, OW; Lee, TD; Lusvarghi, S; Robey, RW; Shen, M; Tebase, BG, 2019
)
0.51
"The knowledge on human serum albumin (HSA) binding is of utmost importance as it affects pharmacokinetic behavior and bioavailability of drugs."( Human Serum Albumin Binding in a Vial: A Novel UV-pH Titration Method To Assist Drug Design.
Bajusz, D; Balogh, GT; Dargó, G; Müller, J; Simon, K, 2020
)
0.56

Dosage Studied

The results indicate that zopiclone is an active hypnotic compound. The higher dosage being best adapted to the type of patients included in the study. After chronic dosing the sedative effects of flunitrazepam showed tolerance and the increases in exploration remained.

ExcerptRelevanceReference
" The dosage layed between 3,3 mg and 10 mg according to each individual case."( [Intravenous mogadon in epileptic patients. Clinico-electroencephalographic study].
de Oliveira, RS, 1979
)
0.26
" The "specific" use of each drug on the various forms of epileptic seizures is determined and the possibility of crisis control with reduction of the drugs dosage is verified."( [Effect of drugs on electroclinical types of epileptic seizures in Lennox-Gastaut syndrome].
Lison, MP; Speciali, GG, 1977
)
0.26
"Since 1968 54 children with infantile convulsion and myoclonic-static fits have been treated with RADEDORM (minimum dosage 2x1/2 tablets, maximum 1--1,5 mg/kg body weight) in the Neuropediatric department of the University Pediatric Clinic in Leipzig."( [Long term therapy with nitrazepam in children with infantile spasms and myoclonic-astatic fits].
Degen, R; Edelmann, R; Lässker, G, 1975
)
0.56
" Dosage of each drug used in this experiment was calculated by determining the dosage which caused the same degree of muscle relaxation and sedative action in mice (see, Fig."( [Conditioning of emotional behavior originating at the hypothalamus. (2) Effects of drugs on conflict-induced behavior models].
Abe, Y; Mineo, K; Yanaura, S, 1976
)
0.26
" There was a significant difference in the slope of log dose-response curves; these curves were much steeper for pentobarbitone, droperidol and chlorpromazine than for nitrazepam, flunitrazepam, and diazepam."( [Action of central depressants on the nitrous oxide anesthesia (author's transl)].
Andics, A; Gogolák, G; Huck, S; Stumpf, C, 1975
)
0.45
" Blood levels of nimetazepam after oral administration to dogs were relatively low at early periods after dosage and reached peak levels (7-7-7-9 mug equiv."( Comparative metabolic study of nimetazepam and its desmethyl derivative (nitrazepam) in dogs.
Endo, M; Haga, F; Kitagawa, S; Yanagi, Y, 1976
)
0.49
" For treatment, the dosage and way of administration of diazepam should be judged according to the severeness of the disease; nitrazepam and clonazepam are effective, too."( [Clinical analysis of 30 cases of stiff-man syndrome].
Chen, BJ, 1992
)
0.49
" Dosage of both drugs was within the usual range."( Carbamazepine and benzodiazepines in combination--a possibility to improve the efficacy of treatment of patients with 'intractable' infantile spasms?
Groh, C; Lischka, A; Müller, R; Tatzer, E, 1987
)
0.27
"The elimination half-life of chlordiazepoxide and diazepam increases with age, and this may cause prolongation of action after a single dose and delayed accumulation on multiple dosing in elderly patients."( [Pharmacokinetic of benzodiazepines in old age].
Vozeh, S, 1981
)
0.26
" Such differences may be very important clinically because pharmacokinetic data will help to optimize drug therapy with respect to the choice of the proper drug and drug preparation, as well as with the choice of a proper dose and dosage regimen."( Pharmacokinetics of benzodiazepines: metabolic pathways and plasma level profiles.
Breimer, DD; Jochemsen, R, 1984
)
0.27
" The controls were comprised of naive rats (G-VI) and naive rats dosed in the same manner as the dependent rats."( Participant of serotonin turnover rate in the brain on barbital withdrawal convulsion.
Hiramori, T; Nakao, K; Tagashira, E; Urano, T; Yanaura, S, 1982
)
0.26
" After chronic dosing the sedative effects of flunitrazepam showed tolerance and the increases in exploration remained while locomotion was less increased."( Effects of agents which enhance GABA-mediated neurotransmission on licking conflict in rats and exploration in mice.
Gardner, CR; Piper, DC, 1982
)
0.52
" The results indicate that zopiclone is an active hypnotic compound, comparable in its effects to those of nitrazepam, the higher dosage being best adapted to the type of patients included in the study."( Comparison of nitrazepam and zopiclone in psychiatric patients.
Brun, JP; Dreyfus, JF; Pull, CB, 1983
)
0.84
" The results indicate that zopiclone is an active hypnotic compound, comparable in its effects to those of nitrazepam, the higher dosage being best adapted to the type of patients included in the study."( Comparison of nitrazepam and zopiclone in psychiatric patients.
Brun, JP; Dreyfus, JF; Pull, CB, 1982
)
0.84
" 6 The results of this study are not likely to have important consequences for dosage of nitrazepam as an hypnotic."( Influence of sex, menstrual cycle and oral contraception on the disposition of nitrazepam.
Boeijinga, JK; Breimer, DD; Jochemsen, R; van der Graaff, M, 1982
)
0.71
" Treated males were mated to examine reproductive performance with untreated females after each dosing period, and after 4 and 9 week of recovery periods."( Potential parameters of male reproductive toxicity: reproductive performance, histopathology and sperm evaluation in SD rats given nitrazepam.
Hara, K; Ikeuchi, K; Kanamori, S; Kawai, M; Kishi, K; Maruyama, T; Sasaki, K, 1995
)
0.5
"A case of repetitive hallucinations during treatment with a therapeutic dosage of triazolam (0."( Hallucinations after a therapeutic dose of benzodiazepine hypnotics with co-administration of erythromycin.
Kaneko, S; Kondo, T; Mihara, K; Morita, S; Otani, K; Tokinaga, N, 1996
)
0.29
"Adrenocorticotropic hormone (ACTH) is probably effective for the short-term treatment of infantile spasms, but there is insufficient evidence to recommend the optimum dosage and duration of treatment."( Practice parameter: medical treatment of infantile spasms: report of the American Academy of Neurology and the Child Neurology Society.
Adams-Webber, T; Ashwal, S; Ballaban-Gill, K; Baram, TZ; Duchowny, M; Hirtz, D; Mackay, MT; Pellock, JM; Shields, WD; Shinnar, S; Snead, OC; Stephens, D; Weiss, SK; Wyllie, E, 2004
)
0.32
[information is derived through text-mining from research data collected from National Library of Medicine (NLM), extracted Dec-2023]

Roles (5)

RoleDescription
anticonvulsantA drug used to prevent seizures or reduce their severity.
antispasmodic drugA drug that suppresses spasms. These are usually caused by smooth muscle contraction, especially in tubular organs. The effect is to prevent spasms of the stomach, intestine or urinary bladder.
GABA modulatorA substance that does not act as agonist or antagonist but does affect the gamma-aminobutyric acid receptor-ionophore complex. GABA-A receptors appear to have at least three allosteric sites at which modulators act: a site at which benzodiazepines act by increasing the opening frequency of gamma-aminobutyric acid-activated chloride channels; a site at which barbiturates act to prolong the duration of channel opening; and a site at which some steroids may act.
sedativeA central nervous system depressant used to induce drowsiness or sleep or to reduce psychological excitement or anxiety.
drug metabolitenull
[role information is derived from Chemical Entities of Biological Interest (ChEBI), Hastings J, Owen G, Dekker A, Ennis M, Kale N, Muthukrishnan V, Turner S, Swainston N, Mendes P, Steinbeck C. (2016). ChEBI in 2016: Improved services and an expanding collection of metabolites. Nucleic Acids Res]

Drug Classes (2)

ClassDescription
1,4-benzodiazepinone
C-nitro compoundA nitro compound having the nitro group (-NO2) attached to a carbon atom.
[compound class information is derived from Chemical Entities of Biological Interest (ChEBI), Hastings J, Owen G, Dekker A, Ennis M, Kale N, Muthukrishnan V, Turner S, Swainston N, Mendes P, Steinbeck C. (2016). ChEBI in 2016: Improved services and an expanding collection of metabolites. Nucleic Acids Res]

Protein Targets (47)

Potency Measurements

ProteinTaxonomyMeasurementAverage (µ)Min (ref.)Avg (ref.)Max (ref.)Bioassay(s)
RAR-related orphan receptor gammaMus musculus (house mouse)Potency7.49780.006038.004119,952.5996AID1159521
AR proteinHomo sapiens (human)Potency11.23710.000221.22318,912.5098AID1259243; AID1259247
cytochrome P450 family 3 subfamily A polypeptide 4Homo sapiens (human)Potency13.80290.01237.983543.2770AID1645841
glucocorticoid receptor [Homo sapiens]Homo sapiens (human)Potency2.68320.000214.376460.0339AID720691
estrogen-related nuclear receptor alphaHomo sapiens (human)Potency28.58720.001530.607315,848.9004AID1224841; AID1224842; AID1224848; AID1224849; AID1259401; AID1259403
pregnane X nuclear receptorHomo sapiens (human)Potency0.10590.005428.02631,258.9301AID1346982
GVesicular stomatitis virusPotency43.64860.01238.964839.8107AID1645842
15-hydroxyprostaglandin dehydrogenase [NAD(+)] isoform 1Homo sapiens (human)Potency25.11890.001815.663839.8107AID894
chromobox protein homolog 1Homo sapiens (human)Potency89.12510.006026.168889.1251AID540317
thyroid hormone receptor beta isoform 2Rattus norvegicus (Norway rat)Potency26.60320.000323.4451159.6830AID743065
DNA polymerase iota isoform a (long)Homo sapiens (human)Potency89.12510.050127.073689.1251AID588590
gemininHomo sapiens (human)Potency25.92900.004611.374133.4983AID624297
histone acetyltransferase KAT2A isoform 1Homo sapiens (human)Potency39.81070.251215.843239.8107AID504327
lamin isoform A-delta10Homo sapiens (human)Potency3.54810.891312.067628.1838AID1487
Interferon betaHomo sapiens (human)Potency43.64860.00339.158239.8107AID1645842
HLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)Potency43.64860.01238.964839.8107AID1645842
Inositol hexakisphosphate kinase 1Homo sapiens (human)Potency43.64860.01238.964839.8107AID1645842
cytochrome P450 2C9, partialHomo sapiens (human)Potency43.64860.01238.964839.8107AID1645842
[prepared from compound, protein, and bioassay information from National Library of Medicine (NLM), extracted Dec-2023]

Inhibition Measurements

ProteinTaxonomyMeasurementAverageMin (ref.)Avg (ref.)Max (ref.)Bioassay(s)
Gamma-aminobutyric acid receptor subunit piHomo sapiens (human)IC50 (µMol)100,000.00000.00011.02016.0000AID40995
Gamma-aminobutyric acid receptor subunit deltaHomo sapiens (human)IC50 (µMol)100,000.00000.00011.02016.0000AID40995
ATP-binding cassette sub-family C member 3Homo sapiens (human)IC50 (µMol)133.00000.63154.45319.3000AID1473740
Multidrug resistance-associated protein 4Homo sapiens (human)IC50 (µMol)133.00000.20005.677410.0000AID1473741
Bile salt export pumpHomo sapiens (human)IC50 (µMol)134.00000.11007.190310.0000AID1443980; AID1473738
Gamma-aminobutyric acid receptor subunit alpha-1Bos taurus (cattle)IC50 (µMol)0.03800.00050.53857.2000AID41996
Gamma-aminobutyric acid receptor subunit beta-1Bos taurus (cattle)IC50 (µMol)0.03800.00050.53857.2000AID41996
Gamma-aminobutyric acid receptor subunit alpha-2Bos taurus (cattle)IC50 (µMol)0.03800.00050.53857.2000AID41996
Gamma-aminobutyric acid receptor subunit alpha-3Bos taurus (cattle)IC50 (µMol)0.03800.00050.53857.2000AID41996
Gamma-aminobutyric acid receptor subunit alpha-1Homo sapiens (human)IC50 (µMol)100,000.00000.00011.14948.0000AID40995
Gamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)IC50 (µMol)100,000.00000.00011.03936.0000AID40995
Gamma-aminobutyric acid receptor subunit gamma-2Homo sapiens (human)IC50 (µMol)100,000.00000.00011.29158.0000AID40995
5-hydroxytryptamine receptor 1ARattus norvegicus (Norway rat)IC50 (µMol)0.03800.00031.38338.4000AID41996
Gamma-aminobutyric acid receptor subunit alpha-4Bos taurus (cattle)IC50 (µMol)0.03800.00050.53857.2000AID41996
Gamma-aminobutyric acid receptor subunit gamma-2Bos taurus (cattle)IC50 (µMol)0.03800.00050.53857.2000AID41996
Gamma-aminobutyric acid receptor subunit beta-3Homo sapiens (human)IC50 (µMol)100,000.00000.00011.30188.0000AID40995
Translocator proteinHomo sapiens (human)IC50 (µMol)100,000.00000.00030.13020.4900AID40987
Gamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)IC50 (µMol)100,000.00000.00010.98006.0000AID40995
Gamma-aminobutyric acid receptor subunit alpha-3Homo sapiens (human)IC50 (µMol)100,000.00000.00011.19936.0000AID40995
Gamma-aminobutyric acid receptor subunit alpha-2Homo sapiens (human)IC50 (µMol)100,000.00000.00011.02016.0000AID40995
Gamma-aminobutyric acid receptor subunit beta-2Homo sapiens (human)IC50 (µMol)100,000.00000.00010.93746.0000AID40995
Gamma-aminobutyric acid receptor subunit alpha-4Homo sapiens (human)IC50 (µMol)100,000.00000.00011.01936.0000AID40995
Gamma-aminobutyric acid receptor subunit epsilonHomo sapiens (human)IC50 (µMol)100,000.00000.00011.02016.0000AID40995
Gamma-aminobutyric acid receptor subunit alpha-6Homo sapiens (human)IC50 (µMol)100,000.00000.00011.02016.0000AID40995
Gamma-aminobutyric acid receptor subunit gamma-1Homo sapiens (human)IC50 (µMol)100,000.00000.00011.02016.0000AID40995
Canalicular multispecific organic anion transporter 1Homo sapiens (human)IC50 (µMol)133.00002.41006.343310.0000AID1473739
Gamma-aminobutyric acid receptor subunit gamma-3Homo sapiens (human)IC50 (µMol)100,000.00000.00011.02016.0000AID40995
Lysine-specific demethylase 4CHomo sapiens (human)IC50 (µMol)200.00000.16002.11489.4000AID678707
Lysine-specific demethylase 4CHomo sapiens (human)Ki200.00000.00220.00220.0022AID678707
Gamma-aminobutyric acid receptor subunit thetaHomo sapiens (human)IC50 (µMol)100,000.00000.00011.02016.0000AID40995
[prepared from compound, protein, and bioassay information from National Library of Medicine (NLM), extracted Dec-2023]

Biological Processes (156)

Processvia Protein(s)Taxonomy
chloride transmembrane transportGamma-aminobutyric acid receptor subunit piHomo sapiens (human)
regulation of membrane potentialGamma-aminobutyric acid receptor subunit piHomo sapiens (human)
chemical synaptic transmissionGamma-aminobutyric acid receptor subunit piHomo sapiens (human)
signal transductionGamma-aminobutyric acid receptor subunit deltaHomo sapiens (human)
gamma-aminobutyric acid signaling pathwayGamma-aminobutyric acid receptor subunit deltaHomo sapiens (human)
synaptic transmission, GABAergicGamma-aminobutyric acid receptor subunit deltaHomo sapiens (human)
regulation of postsynaptic membrane potentialGamma-aminobutyric acid receptor subunit deltaHomo sapiens (human)
chloride transmembrane transportGamma-aminobutyric acid receptor subunit deltaHomo sapiens (human)
regulation of membrane potentialGamma-aminobutyric acid receptor subunit deltaHomo sapiens (human)
chemical synaptic transmissionGamma-aminobutyric acid receptor subunit deltaHomo sapiens (human)
xenobiotic metabolic processATP-binding cassette sub-family C member 3Homo sapiens (human)
xenobiotic transmembrane transportATP-binding cassette sub-family C member 3Homo sapiens (human)
bile acid and bile salt transportATP-binding cassette sub-family C member 3Homo sapiens (human)
glucuronoside transportATP-binding cassette sub-family C member 3Homo sapiens (human)
xenobiotic transportATP-binding cassette sub-family C member 3Homo sapiens (human)
transmembrane transportATP-binding cassette sub-family C member 3Homo sapiens (human)
leukotriene transportATP-binding cassette sub-family C member 3Homo sapiens (human)
monoatomic anion transmembrane transportATP-binding cassette sub-family C member 3Homo sapiens (human)
transport across blood-brain barrierATP-binding cassette sub-family C member 3Homo sapiens (human)
prostaglandin secretionMultidrug resistance-associated protein 4Homo sapiens (human)
cilium assemblyMultidrug resistance-associated protein 4Homo sapiens (human)
platelet degranulationMultidrug resistance-associated protein 4Homo sapiens (human)
xenobiotic metabolic processMultidrug resistance-associated protein 4Homo sapiens (human)
xenobiotic transmembrane transportMultidrug resistance-associated protein 4Homo sapiens (human)
bile acid and bile salt transportMultidrug resistance-associated protein 4Homo sapiens (human)
prostaglandin transportMultidrug resistance-associated protein 4Homo sapiens (human)
urate transportMultidrug resistance-associated protein 4Homo sapiens (human)
glutathione transmembrane transportMultidrug resistance-associated protein 4Homo sapiens (human)
transmembrane transportMultidrug resistance-associated protein 4Homo sapiens (human)
cAMP transportMultidrug resistance-associated protein 4Homo sapiens (human)
leukotriene transportMultidrug resistance-associated protein 4Homo sapiens (human)
monoatomic anion transmembrane transportMultidrug resistance-associated protein 4Homo sapiens (human)
export across plasma membraneMultidrug resistance-associated protein 4Homo sapiens (human)
transport across blood-brain barrierMultidrug resistance-associated protein 4Homo sapiens (human)
guanine nucleotide transmembrane transportMultidrug resistance-associated protein 4Homo sapiens (human)
fatty acid metabolic processBile salt export pumpHomo sapiens (human)
bile acid biosynthetic processBile salt export pumpHomo sapiens (human)
xenobiotic metabolic processBile salt export pumpHomo sapiens (human)
xenobiotic transmembrane transportBile salt export pumpHomo sapiens (human)
response to oxidative stressBile salt export pumpHomo sapiens (human)
bile acid metabolic processBile salt export pumpHomo sapiens (human)
response to organic cyclic compoundBile salt export pumpHomo sapiens (human)
bile acid and bile salt transportBile salt export pumpHomo sapiens (human)
canalicular bile acid transportBile salt export pumpHomo sapiens (human)
protein ubiquitinationBile salt export pumpHomo sapiens (human)
regulation of fatty acid beta-oxidationBile salt export pumpHomo sapiens (human)
carbohydrate transmembrane transportBile salt export pumpHomo sapiens (human)
bile acid signaling pathwayBile salt export pumpHomo sapiens (human)
cholesterol homeostasisBile salt export pumpHomo sapiens (human)
response to estrogenBile salt export pumpHomo sapiens (human)
response to ethanolBile salt export pumpHomo sapiens (human)
xenobiotic export from cellBile salt export pumpHomo sapiens (human)
lipid homeostasisBile salt export pumpHomo sapiens (human)
phospholipid homeostasisBile salt export pumpHomo sapiens (human)
positive regulation of bile acid secretionBile salt export pumpHomo sapiens (human)
regulation of bile acid metabolic processBile salt export pumpHomo sapiens (human)
transmembrane transportBile salt export pumpHomo sapiens (human)
cell surface receptor signaling pathway via JAK-STATInterferon betaHomo sapiens (human)
response to exogenous dsRNAInterferon betaHomo sapiens (human)
B cell activation involved in immune responseInterferon betaHomo sapiens (human)
cell surface receptor signaling pathwayInterferon betaHomo sapiens (human)
cell surface receptor signaling pathway via JAK-STATInterferon betaHomo sapiens (human)
response to virusInterferon betaHomo sapiens (human)
positive regulation of autophagyInterferon betaHomo sapiens (human)
cytokine-mediated signaling pathwayInterferon betaHomo sapiens (human)
natural killer cell activationInterferon betaHomo sapiens (human)
positive regulation of peptidyl-serine phosphorylation of STAT proteinInterferon betaHomo sapiens (human)
cellular response to interferon-betaInterferon betaHomo sapiens (human)
B cell proliferationInterferon betaHomo sapiens (human)
negative regulation of viral genome replicationInterferon betaHomo sapiens (human)
innate immune responseInterferon betaHomo sapiens (human)
positive regulation of innate immune responseInterferon betaHomo sapiens (human)
regulation of MHC class I biosynthetic processInterferon betaHomo sapiens (human)
negative regulation of T cell differentiationInterferon betaHomo sapiens (human)
positive regulation of transcription by RNA polymerase IIInterferon betaHomo sapiens (human)
defense response to virusInterferon betaHomo sapiens (human)
type I interferon-mediated signaling pathwayInterferon betaHomo sapiens (human)
neuron cellular homeostasisInterferon betaHomo sapiens (human)
cellular response to exogenous dsRNAInterferon betaHomo sapiens (human)
cellular response to virusInterferon betaHomo sapiens (human)
negative regulation of Lewy body formationInterferon betaHomo sapiens (human)
negative regulation of T-helper 2 cell cytokine productionInterferon betaHomo sapiens (human)
positive regulation of apoptotic signaling pathwayInterferon betaHomo sapiens (human)
response to exogenous dsRNAInterferon betaHomo sapiens (human)
B cell differentiationInterferon betaHomo sapiens (human)
natural killer cell activation involved in immune responseInterferon betaHomo sapiens (human)
adaptive immune responseInterferon betaHomo sapiens (human)
T cell activation involved in immune responseInterferon betaHomo sapiens (human)
humoral immune responseInterferon betaHomo sapiens (human)
positive regulation of T cell mediated cytotoxicityHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
adaptive immune responseHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
antigen processing and presentation of endogenous peptide antigen via MHC class I via ER pathway, TAP-independentHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
regulation of T cell anergyHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
defense responseHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
immune responseHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
detection of bacteriumHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
regulation of interleukin-12 productionHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
regulation of interleukin-6 productionHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
protection from natural killer cell mediated cytotoxicityHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
innate immune responseHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
regulation of dendritic cell differentiationHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
antigen processing and presentation of endogenous peptide antigen via MHC class IbHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
inhibitory synapse assemblyGamma-aminobutyric acid receptor subunit alpha-1Bos taurus (cattle)
monoatomic ion transportGamma-aminobutyric acid receptor subunit beta-1Bos taurus (cattle)
gamma-aminobutyric acid signaling pathwayGamma-aminobutyric acid receptor subunit beta-1Bos taurus (cattle)
cellular response to histamineGamma-aminobutyric acid receptor subunit beta-1Bos taurus (cattle)
inhibitory synapse assemblyGamma-aminobutyric acid receptor subunit alpha-2Bos taurus (cattle)
gamma-aminobutyric acid signaling pathwayGamma-aminobutyric acid receptor subunit alpha-1Homo sapiens (human)
synaptic transmission, GABAergicGamma-aminobutyric acid receptor subunit alpha-1Homo sapiens (human)
chloride transmembrane transportGamma-aminobutyric acid receptor subunit alpha-1Homo sapiens (human)
inhibitory synapse assemblyGamma-aminobutyric acid receptor subunit alpha-1Homo sapiens (human)
regulation of postsynaptic membrane potentialGamma-aminobutyric acid receptor subunit alpha-1Homo sapiens (human)
monoatomic ion transportGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
signal transductionGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
gamma-aminobutyric acid signaling pathwayGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
response to toxic substanceGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
central nervous system neuron developmentGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
response to progesteroneGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
ovulation cycleGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
regulation of postsynaptic membrane potentialGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
cellular response to histamineGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
regulation of presynaptic membrane potentialGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
chloride transmembrane transportGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
chemical synaptic transmissionGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
regulation of membrane potentialGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
gamma-aminobutyric acid signaling pathwayGamma-aminobutyric acid receptor subunit gamma-2Homo sapiens (human)
post-embryonic developmentGamma-aminobutyric acid receptor subunit gamma-2Homo sapiens (human)
adult behaviorGamma-aminobutyric acid receptor subunit gamma-2Homo sapiens (human)
synaptic transmission, GABAergicGamma-aminobutyric acid receptor subunit gamma-2Homo sapiens (human)
cellular response to histamineGamma-aminobutyric acid receptor subunit gamma-2Homo sapiens (human)
chloride transmembrane transportGamma-aminobutyric acid receptor subunit gamma-2Homo sapiens (human)
inhibitory synapse assemblyGamma-aminobutyric acid receptor subunit gamma-2Homo sapiens (human)
regulation of postsynaptic membrane potentialGamma-aminobutyric acid receptor subunit gamma-2Homo sapiens (human)
cellular response to histamineGamma-aminobutyric acid receptor subunit gamma-2Bos taurus (cattle)
chloride transmembrane transportGamma-aminobutyric acid receptor subunit gamma-2Bos taurus (cattle)
inhibitory synapse assemblyGamma-aminobutyric acid receptor subunit gamma-2Bos taurus (cattle)
signal transductionGamma-aminobutyric acid receptor subunit beta-3Homo sapiens (human)
gamma-aminobutyric acid signaling pathwayGamma-aminobutyric acid receptor subunit beta-3Homo sapiens (human)
synaptic transmission, GABAergicGamma-aminobutyric acid receptor subunit beta-3Homo sapiens (human)
roof of mouth developmentGamma-aminobutyric acid receptor subunit beta-3Homo sapiens (human)
cellular response to histamineGamma-aminobutyric acid receptor subunit beta-3Homo sapiens (human)
chloride transmembrane transportGamma-aminobutyric acid receptor subunit beta-3Homo sapiens (human)
inhibitory synapse assemblyGamma-aminobutyric acid receptor subunit beta-3Homo sapiens (human)
chemical synaptic transmissionGamma-aminobutyric acid receptor subunit beta-3Homo sapiens (human)
regulation of membrane potentialGamma-aminobutyric acid receptor subunit beta-3Homo sapiens (human)
protein targeting to mitochondrionTranslocator proteinHomo sapiens (human)
C21-steroid hormone biosynthetic processTranslocator proteinHomo sapiens (human)
heme biosynthetic processTranslocator proteinHomo sapiens (human)
monoatomic anion transportTranslocator proteinHomo sapiens (human)
chloride transportTranslocator proteinHomo sapiens (human)
steroid metabolic processTranslocator proteinHomo sapiens (human)
glial cell migrationTranslocator proteinHomo sapiens (human)
response to xenobiotic stimulusTranslocator proteinHomo sapiens (human)
response to manganese ionTranslocator proteinHomo sapiens (human)
response to vitamin B1Translocator proteinHomo sapiens (human)
peripheral nervous system axon regenerationTranslocator proteinHomo sapiens (human)
sterol transportTranslocator proteinHomo sapiens (human)
adrenal gland developmentTranslocator proteinHomo sapiens (human)
negative regulation of protein ubiquitinationTranslocator proteinHomo sapiens (human)
regulation of cholesterol transportTranslocator proteinHomo sapiens (human)
response to progesteroneTranslocator proteinHomo sapiens (human)
negative regulation of tumor necrosis factor productionTranslocator proteinHomo sapiens (human)
response to testosteroneTranslocator proteinHomo sapiens (human)
regulation of cell population proliferationTranslocator proteinHomo sapiens (human)
cholesterol homeostasisTranslocator proteinHomo sapiens (human)
positive regulation of apoptotic processTranslocator proteinHomo sapiens (human)
negative regulation of nitric oxide biosynthetic processTranslocator proteinHomo sapiens (human)
behavioral response to painTranslocator proteinHomo sapiens (human)
regulation of steroid biosynthetic processTranslocator proteinHomo sapiens (human)
positive regulation of mitochondrial depolarizationTranslocator proteinHomo sapiens (human)
positive regulation of calcium ion transportTranslocator proteinHomo sapiens (human)
contact inhibitionTranslocator proteinHomo sapiens (human)
positive regulation of glial cell proliferationTranslocator proteinHomo sapiens (human)
negative regulation of glial cell proliferationTranslocator proteinHomo sapiens (human)
positive regulation of programmed necrotic cell deathTranslocator proteinHomo sapiens (human)
cellular response to lipopolysaccharideTranslocator proteinHomo sapiens (human)
cellular response to zinc ionTranslocator proteinHomo sapiens (human)
cellular hypotonic responseTranslocator proteinHomo sapiens (human)
maintenance of protein location in mitochondrionTranslocator proteinHomo sapiens (human)
negative regulation of mitophagyTranslocator proteinHomo sapiens (human)
negative regulation of ATP metabolic processTranslocator proteinHomo sapiens (human)
response to acetylcholineTranslocator proteinHomo sapiens (human)
positive regulation of reactive oxygen species metabolic processTranslocator proteinHomo sapiens (human)
negative regulation of corticosterone secretionTranslocator proteinHomo sapiens (human)
behavioral fear responseGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
signal transductionGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
gamma-aminobutyric acid signaling pathwayGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
associative learningGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
inner ear receptor cell developmentGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
innervationGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
cochlea developmentGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
regulation of presynaptic membrane potentialGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
synaptic transmission, GABAergicGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
chloride transmembrane transportGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
inhibitory synapse assemblyGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
regulation of postsynaptic membrane potentialGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
gamma-aminobutyric acid signaling pathwayGamma-aminobutyric acid receptor subunit alpha-3Homo sapiens (human)
inhibitory synapse assemblyGamma-aminobutyric acid receptor subunit alpha-3Homo sapiens (human)
chloride transmembrane transportGamma-aminobutyric acid receptor subunit alpha-3Homo sapiens (human)
regulation of postsynaptic membrane potentialGamma-aminobutyric acid receptor subunit alpha-3Homo sapiens (human)
synaptic transmission, GABAergicGamma-aminobutyric acid receptor subunit alpha-3Homo sapiens (human)
gamma-aminobutyric acid signaling pathwayGamma-aminobutyric acid receptor subunit alpha-2Homo sapiens (human)
regulation of presynaptic membrane potentialGamma-aminobutyric acid receptor subunit alpha-2Homo sapiens (human)
chloride transmembrane transportGamma-aminobutyric acid receptor subunit alpha-2Homo sapiens (human)
inhibitory synapse assemblyGamma-aminobutyric acid receptor subunit alpha-2Homo sapiens (human)
regulation of postsynaptic membrane potentialGamma-aminobutyric acid receptor subunit alpha-2Homo sapiens (human)
synaptic transmission, GABAergicGamma-aminobutyric acid receptor subunit alpha-2Homo sapiens (human)
gamma-aminobutyric acid signaling pathwayGamma-aminobutyric acid receptor subunit beta-2Homo sapiens (human)
chemical synaptic transmissionGamma-aminobutyric acid receptor subunit beta-2Homo sapiens (human)
synaptic transmission, GABAergicGamma-aminobutyric acid receptor subunit beta-2Homo sapiens (human)
regulation of postsynaptic membrane potentialGamma-aminobutyric acid receptor subunit beta-2Homo sapiens (human)
inner ear receptor cell developmentGamma-aminobutyric acid receptor subunit beta-2Homo sapiens (human)
innervationGamma-aminobutyric acid receptor subunit beta-2Homo sapiens (human)
cellular response to histamineGamma-aminobutyric acid receptor subunit beta-2Homo sapiens (human)
cochlea developmentGamma-aminobutyric acid receptor subunit beta-2Homo sapiens (human)
chloride transmembrane transportGamma-aminobutyric acid receptor subunit beta-2Homo sapiens (human)
inhibitory synapse assemblyGamma-aminobutyric acid receptor subunit beta-2Homo sapiens (human)
regulation of membrane potentialGamma-aminobutyric acid receptor subunit beta-2Homo sapiens (human)
gamma-aminobutyric acid signaling pathwayGamma-aminobutyric acid receptor subunit alpha-4Homo sapiens (human)
synaptic transmission, GABAergicGamma-aminobutyric acid receptor subunit alpha-4Homo sapiens (human)
chloride transmembrane transportGamma-aminobutyric acid receptor subunit alpha-4Homo sapiens (human)
inhibitory synapse assemblyGamma-aminobutyric acid receptor subunit alpha-4Homo sapiens (human)
regulation of postsynaptic membrane potentialGamma-aminobutyric acid receptor subunit alpha-4Homo sapiens (human)
negative regulation of chloride transportGamma-aminobutyric acid receptor subunit epsilonHomo sapiens (human)
gamma-aminobutyric acid signaling pathwayGamma-aminobutyric acid receptor subunit epsilonHomo sapiens (human)
chloride transmembrane transportGamma-aminobutyric acid receptor subunit epsilonHomo sapiens (human)
regulation of postsynaptic membrane potentialGamma-aminobutyric acid receptor subunit epsilonHomo sapiens (human)
synaptic transmission, GABAergicGamma-aminobutyric acid receptor subunit epsilonHomo sapiens (human)
inhibitory synapse assemblyGamma-aminobutyric acid receptor subunit epsilonHomo sapiens (human)
signal transductionGamma-aminobutyric acid receptor subunit alpha-6Homo sapiens (human)
gamma-aminobutyric acid signaling pathwayGamma-aminobutyric acid receptor subunit alpha-6Homo sapiens (human)
synaptic transmission, GABAergicGamma-aminobutyric acid receptor subunit alpha-6Homo sapiens (human)
chloride transmembrane transportGamma-aminobutyric acid receptor subunit alpha-6Homo sapiens (human)
regulation of postsynaptic membrane potentialGamma-aminobutyric acid receptor subunit alpha-6Homo sapiens (human)
inhibitory synapse assemblyGamma-aminobutyric acid receptor subunit alpha-6Homo sapiens (human)
regulation of postsynaptic membrane potentialGamma-aminobutyric acid receptor subunit gamma-1Homo sapiens (human)
synaptic transmission, GABAergicGamma-aminobutyric acid receptor subunit gamma-1Homo sapiens (human)
gamma-aminobutyric acid signaling pathwayGamma-aminobutyric acid receptor subunit gamma-1Homo sapiens (human)
chloride transmembrane transportGamma-aminobutyric acid receptor subunit gamma-1Homo sapiens (human)
inhibitory synapse assemblyGamma-aminobutyric acid receptor subunit gamma-1Homo sapiens (human)
inositol phosphate metabolic processInositol hexakisphosphate kinase 1Homo sapiens (human)
phosphatidylinositol phosphate biosynthetic processInositol hexakisphosphate kinase 1Homo sapiens (human)
negative regulation of cold-induced thermogenesisInositol hexakisphosphate kinase 1Homo sapiens (human)
inositol phosphate biosynthetic processInositol hexakisphosphate kinase 1Homo sapiens (human)
xenobiotic metabolic processCanalicular multispecific organic anion transporter 1Homo sapiens (human)
xenobiotic transmembrane transportCanalicular multispecific organic anion transporter 1Homo sapiens (human)
negative regulation of gene expressionCanalicular multispecific organic anion transporter 1Homo sapiens (human)
bile acid and bile salt transportCanalicular multispecific organic anion transporter 1Homo sapiens (human)
bilirubin transportCanalicular multispecific organic anion transporter 1Homo sapiens (human)
heme catabolic processCanalicular multispecific organic anion transporter 1Homo sapiens (human)
xenobiotic export from cellCanalicular multispecific organic anion transporter 1Homo sapiens (human)
transmembrane transportCanalicular multispecific organic anion transporter 1Homo sapiens (human)
transepithelial transportCanalicular multispecific organic anion transporter 1Homo sapiens (human)
leukotriene transportCanalicular multispecific organic anion transporter 1Homo sapiens (human)
monoatomic anion transmembrane transportCanalicular multispecific organic anion transporter 1Homo sapiens (human)
transport across blood-brain barrierCanalicular multispecific organic anion transporter 1Homo sapiens (human)
xenobiotic transport across blood-brain barrierCanalicular multispecific organic anion transporter 1Homo sapiens (human)
response to xenobiotic stimulusGamma-aminobutyric acid receptor subunit gamma-3Homo sapiens (human)
chloride transmembrane transportGamma-aminobutyric acid receptor subunit gamma-3Homo sapiens (human)
regulation of postsynaptic membrane potentialGamma-aminobutyric acid receptor subunit gamma-3Homo sapiens (human)
synaptic transmission, GABAergicGamma-aminobutyric acid receptor subunit gamma-3Homo sapiens (human)
inhibitory synapse assemblyGamma-aminobutyric acid receptor subunit gamma-3Homo sapiens (human)
gamma-aminobutyric acid signaling pathwayGamma-aminobutyric acid receptor subunit gamma-3Homo sapiens (human)
blastocyst formationLysine-specific demethylase 4CHomo sapiens (human)
positive regulation of cell population proliferationLysine-specific demethylase 4CHomo sapiens (human)
stem cell population maintenanceLysine-specific demethylase 4CHomo sapiens (human)
androgen receptor signaling pathwayLysine-specific demethylase 4CHomo sapiens (human)
positive regulation of transcription by RNA polymerase IILysine-specific demethylase 4CHomo sapiens (human)
regulation of androgen receptor signaling pathwayLysine-specific demethylase 4CHomo sapiens (human)
regulation of stem cell differentiationLysine-specific demethylase 4CHomo sapiens (human)
regulation of gene expressionLysine-specific demethylase 4CHomo sapiens (human)
chromatin remodelingLysine-specific demethylase 4CHomo sapiens (human)
neurotransmitter transportGamma-aminobutyric acid receptor subunit thetaHomo sapiens (human)
signal transductionGamma-aminobutyric acid receptor subunit thetaHomo sapiens (human)
chemical synaptic transmissionGamma-aminobutyric acid receptor subunit thetaHomo sapiens (human)
chloride transmembrane transportGamma-aminobutyric acid receptor subunit thetaHomo sapiens (human)
regulation of membrane potentialGamma-aminobutyric acid receptor subunit thetaHomo sapiens (human)
[Information is prepared from geneontology information from the June-17-2024 release]

Molecular Functions (68)

Processvia Protein(s)Taxonomy
GABA-A receptor activityGamma-aminobutyric acid receptor subunit piHomo sapiens (human)
GABA-gated chloride ion channel activityGamma-aminobutyric acid receptor subunit piHomo sapiens (human)
neurotransmitter receptor activityGamma-aminobutyric acid receptor subunit piHomo sapiens (human)
chloride channel activityGamma-aminobutyric acid receptor subunit piHomo sapiens (human)
protein bindingGamma-aminobutyric acid receptor subunit deltaHomo sapiens (human)
transmitter-gated monoatomic ion channel activity involved in regulation of postsynaptic membrane potentialGamma-aminobutyric acid receptor subunit deltaHomo sapiens (human)
chloride channel activityGamma-aminobutyric acid receptor subunit deltaHomo sapiens (human)
neurotransmitter receptor activityGamma-aminobutyric acid receptor subunit deltaHomo sapiens (human)
GABA-A receptor activityGamma-aminobutyric acid receptor subunit deltaHomo sapiens (human)
ATP bindingATP-binding cassette sub-family C member 3Homo sapiens (human)
ABC-type xenobiotic transporter activityATP-binding cassette sub-family C member 3Homo sapiens (human)
glucuronoside transmembrane transporter activityATP-binding cassette sub-family C member 3Homo sapiens (human)
ABC-type glutathione S-conjugate transporter activityATP-binding cassette sub-family C member 3Homo sapiens (human)
ABC-type bile acid transporter activityATP-binding cassette sub-family C member 3Homo sapiens (human)
ATP hydrolysis activityATP-binding cassette sub-family C member 3Homo sapiens (human)
ATPase-coupled transmembrane transporter activityATP-binding cassette sub-family C member 3Homo sapiens (human)
xenobiotic transmembrane transporter activityATP-binding cassette sub-family C member 3Homo sapiens (human)
ATPase-coupled inorganic anion transmembrane transporter activityATP-binding cassette sub-family C member 3Homo sapiens (human)
icosanoid transmembrane transporter activityATP-binding cassette sub-family C member 3Homo sapiens (human)
ABC-type transporter activityATP-binding cassette sub-family C member 3Homo sapiens (human)
guanine nucleotide transmembrane transporter activityMultidrug resistance-associated protein 4Homo sapiens (human)
protein bindingMultidrug resistance-associated protein 4Homo sapiens (human)
ATP bindingMultidrug resistance-associated protein 4Homo sapiens (human)
ABC-type xenobiotic transporter activityMultidrug resistance-associated protein 4Homo sapiens (human)
prostaglandin transmembrane transporter activityMultidrug resistance-associated protein 4Homo sapiens (human)
urate transmembrane transporter activityMultidrug resistance-associated protein 4Homo sapiens (human)
purine nucleotide transmembrane transporter activityMultidrug resistance-associated protein 4Homo sapiens (human)
ABC-type glutathione S-conjugate transporter activityMultidrug resistance-associated protein 4Homo sapiens (human)
ABC-type bile acid transporter activityMultidrug resistance-associated protein 4Homo sapiens (human)
efflux transmembrane transporter activityMultidrug resistance-associated protein 4Homo sapiens (human)
15-hydroxyprostaglandin dehydrogenase (NAD+) activityMultidrug resistance-associated protein 4Homo sapiens (human)
ATP hydrolysis activityMultidrug resistance-associated protein 4Homo sapiens (human)
glutathione transmembrane transporter activityMultidrug resistance-associated protein 4Homo sapiens (human)
ATPase-coupled transmembrane transporter activityMultidrug resistance-associated protein 4Homo sapiens (human)
xenobiotic transmembrane transporter activityMultidrug resistance-associated protein 4Homo sapiens (human)
ATPase-coupled inorganic anion transmembrane transporter activityMultidrug resistance-associated protein 4Homo sapiens (human)
ABC-type transporter activityMultidrug resistance-associated protein 4Homo sapiens (human)
protein bindingBile salt export pumpHomo sapiens (human)
ATP bindingBile salt export pumpHomo sapiens (human)
ABC-type xenobiotic transporter activityBile salt export pumpHomo sapiens (human)
bile acid transmembrane transporter activityBile salt export pumpHomo sapiens (human)
canalicular bile acid transmembrane transporter activityBile salt export pumpHomo sapiens (human)
carbohydrate transmembrane transporter activityBile salt export pumpHomo sapiens (human)
ABC-type bile acid transporter activityBile salt export pumpHomo sapiens (human)
ATP hydrolysis activityBile salt export pumpHomo sapiens (human)
cytokine activityInterferon betaHomo sapiens (human)
cytokine receptor bindingInterferon betaHomo sapiens (human)
type I interferon receptor bindingInterferon betaHomo sapiens (human)
protein bindingInterferon betaHomo sapiens (human)
chloramphenicol O-acetyltransferase activityInterferon betaHomo sapiens (human)
TAP bindingHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
signaling receptor bindingHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
protein bindingHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
peptide antigen bindingHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
TAP bindingHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
protein-folding chaperone bindingHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
GABA-gated chloride ion channel activityGamma-aminobutyric acid receptor subunit alpha-1Bos taurus (cattle)
GABA-A receptor activityGamma-aminobutyric acid receptor subunit alpha-1Bos taurus (cattle)
GABA-gated chloride ion channel activityGamma-aminobutyric acid receptor subunit alpha-1Bos taurus (cattle)
GABA-A receptor activityGamma-aminobutyric acid receptor subunit beta-1Bos taurus (cattle)
ligand-gated monoatomic ion channel activityGamma-aminobutyric acid receptor subunit beta-1Bos taurus (cattle)
GABA-gated chloride ion channel activityGamma-aminobutyric acid receptor subunit beta-1Bos taurus (cattle)
GABA-A receptor activityGamma-aminobutyric acid receptor subunit alpha-3Bos taurus (cattle)
GABA-gated chloride ion channel activityGamma-aminobutyric acid receptor subunit alpha-3Bos taurus (cattle)
GABA receptor activityGamma-aminobutyric acid receptor subunit alpha-1Homo sapiens (human)
GABA-gated chloride ion channel activityGamma-aminobutyric acid receptor subunit alpha-1Homo sapiens (human)
GABA-A receptor activityGamma-aminobutyric acid receptor subunit alpha-1Homo sapiens (human)
GABA-gated chloride ion channel activityGamma-aminobutyric acid receptor subunit alpha-1Homo sapiens (human)
transmitter-gated monoatomic ion channel activity involved in regulation of postsynaptic membrane potentialGamma-aminobutyric acid receptor subunit alpha-1Homo sapiens (human)
chloride channel activityGamma-aminobutyric acid receptor subunit alpha-1Homo sapiens (human)
benzodiazepine receptor activityGamma-aminobutyric acid receptor subunit alpha-1Homo sapiens (human)
GABA-A receptor activityGamma-aminobutyric acid receptor subunit alpha-1Homo sapiens (human)
GABA-A receptor activityGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
ligand-gated monoatomic ion channel activityGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
GABA-gated chloride ion channel activityGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
GABA receptor bindingGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
ligand-gated monoatomic ion channel activity involved in regulation of presynaptic membrane potentialGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
G protein-coupled neurotransmitter receptor activity involved in regulation of presynaptic membrane potentialGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
transmitter-gated monoatomic ion channel activity involved in regulation of postsynaptic membrane potentialGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
chloride channel activityGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
neurotransmitter receptor activityGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
GABA-gated chloride ion channel activityGamma-aminobutyric acid receptor subunit gamma-2Homo sapiens (human)
GABA-A receptor activityGamma-aminobutyric acid receptor subunit gamma-2Homo sapiens (human)
chloride channel activityGamma-aminobutyric acid receptor subunit gamma-2Homo sapiens (human)
protein bindingGamma-aminobutyric acid receptor subunit gamma-2Homo sapiens (human)
GABA-gated chloride ion channel activityGamma-aminobutyric acid receptor subunit gamma-2Homo sapiens (human)
transmitter-gated monoatomic ion channel activity involved in regulation of postsynaptic membrane potentialGamma-aminobutyric acid receptor subunit gamma-2Homo sapiens (human)
GABA-A receptor activityGamma-aminobutyric acid receptor subunit gamma-2Homo sapiens (human)
chloride channel activityGamma-aminobutyric acid receptor subunit gamma-2Homo sapiens (human)
neurotransmitter receptor activityGamma-aminobutyric acid receptor subunit gamma-2Homo sapiens (human)
benzodiazepine receptor activityGamma-aminobutyric acid receptor subunit gamma-2Homo sapiens (human)
GABA-gated chloride ion channel activityGamma-aminobutyric acid receptor subunit gamma-2Bos taurus (cattle)
GABA-A receptor activityGamma-aminobutyric acid receptor subunit gamma-2Bos taurus (cattle)
chloride channel activityGamma-aminobutyric acid receptor subunit gamma-2Bos taurus (cattle)
GABA-gated chloride ion channel activityGamma-aminobutyric acid receptor subunit gamma-2Bos taurus (cattle)
GABA-A receptor activityGamma-aminobutyric acid receptor subunit beta-3Homo sapiens (human)
GABA-gated chloride ion channel activityGamma-aminobutyric acid receptor subunit beta-3Homo sapiens (human)
identical protein bindingGamma-aminobutyric acid receptor subunit beta-3Homo sapiens (human)
chloride channel activityGamma-aminobutyric acid receptor subunit beta-3Homo sapiens (human)
neurotransmitter receptor activityGamma-aminobutyric acid receptor subunit beta-3Homo sapiens (human)
androgen bindingTranslocator proteinHomo sapiens (human)
protein bindingTranslocator proteinHomo sapiens (human)
benzodiazepine receptor activityTranslocator proteinHomo sapiens (human)
cholesterol bindingTranslocator proteinHomo sapiens (human)
transmembrane transporter bindingTranslocator proteinHomo sapiens (human)
cholesterol transfer activityTranslocator proteinHomo sapiens (human)
GABA-A receptor activityGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
GABA-gated chloride ion channel activityGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
signaling receptor activityGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
GABA receptor bindingGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
ligand-gated monoatomic ion channel activity involved in regulation of presynaptic membrane potentialGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
transmitter-gated monoatomic ion channel activity involved in regulation of postsynaptic membrane potentialGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
GABA-A receptor activityGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
benzodiazepine receptor activityGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
chloride channel activityGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
GABA-A receptor activityGamma-aminobutyric acid receptor subunit alpha-3Homo sapiens (human)
protein bindingGamma-aminobutyric acid receptor subunit alpha-3Homo sapiens (human)
GABA-gated chloride ion channel activityGamma-aminobutyric acid receptor subunit alpha-3Homo sapiens (human)
benzodiazepine receptor activityGamma-aminobutyric acid receptor subunit alpha-3Homo sapiens (human)
GABA-A receptor activityGamma-aminobutyric acid receptor subunit alpha-3Homo sapiens (human)
chloride channel activityGamma-aminobutyric acid receptor subunit alpha-3Homo sapiens (human)
protein bindingGamma-aminobutyric acid receptor subunit alpha-2Homo sapiens (human)
benzodiazepine receptor activityGamma-aminobutyric acid receptor subunit alpha-2Homo sapiens (human)
GABA-gated chloride ion channel activityGamma-aminobutyric acid receptor subunit alpha-2Homo sapiens (human)
ligand-gated monoatomic ion channel activity involved in regulation of presynaptic membrane potentialGamma-aminobutyric acid receptor subunit alpha-2Homo sapiens (human)
transmitter-gated monoatomic ion channel activity involved in regulation of postsynaptic membrane potentialGamma-aminobutyric acid receptor subunit alpha-2Homo sapiens (human)
GABA-A receptor activityGamma-aminobutyric acid receptor subunit alpha-2Homo sapiens (human)
chloride channel activityGamma-aminobutyric acid receptor subunit alpha-2Homo sapiens (human)
GABA receptor activityGamma-aminobutyric acid receptor subunit beta-2Homo sapiens (human)
GABA-gated chloride ion channel activityGamma-aminobutyric acid receptor subunit beta-2Homo sapiens (human)
GABA-A receptor activityGamma-aminobutyric acid receptor subunit beta-2Homo sapiens (human)
chloride channel activityGamma-aminobutyric acid receptor subunit beta-2Homo sapiens (human)
transmitter-gated monoatomic ion channel activity involved in regulation of postsynaptic membrane potentialGamma-aminobutyric acid receptor subunit beta-2Homo sapiens (human)
neurotransmitter receptor activityGamma-aminobutyric acid receptor subunit beta-2Homo sapiens (human)
chloride channel activityGamma-aminobutyric acid receptor subunit beta-2Homo sapiens (human)
transmitter-gated monoatomic ion channel activity involved in regulation of postsynaptic membrane potentialGamma-aminobutyric acid receptor subunit alpha-4Homo sapiens (human)
chloride channel activityGamma-aminobutyric acid receptor subunit alpha-4Homo sapiens (human)
GABA-A receptor activityGamma-aminobutyric acid receptor subunit alpha-4Homo sapiens (human)
benzodiazepine receptor activityGamma-aminobutyric acid receptor subunit alpha-4Homo sapiens (human)
GABA-gated chloride ion channel activityGamma-aminobutyric acid receptor subunit alpha-4Homo sapiens (human)
GABA-A receptor activityGamma-aminobutyric acid receptor subunit epsilonHomo sapiens (human)
GABA-gated chloride ion channel activityGamma-aminobutyric acid receptor subunit epsilonHomo sapiens (human)
chloride channel activityGamma-aminobutyric acid receptor subunit epsilonHomo sapiens (human)
benzodiazepine receptor activityGamma-aminobutyric acid receptor subunit epsilonHomo sapiens (human)
GABA-A receptor activityGamma-aminobutyric acid receptor subunit epsilonHomo sapiens (human)
transmitter-gated monoatomic ion channel activity involved in regulation of postsynaptic membrane potentialGamma-aminobutyric acid receptor subunit alpha-6Homo sapiens (human)
benzodiazepine receptor activityGamma-aminobutyric acid receptor subunit alpha-6Homo sapiens (human)
GABA-gated chloride ion channel activityGamma-aminobutyric acid receptor subunit alpha-6Homo sapiens (human)
GABA-A receptor activityGamma-aminobutyric acid receptor subunit alpha-6Homo sapiens (human)
chloride channel activityGamma-aminobutyric acid receptor subunit alpha-6Homo sapiens (human)
protein bindingGamma-aminobutyric acid receptor subunit gamma-1Homo sapiens (human)
GABA receptor bindingGamma-aminobutyric acid receptor subunit gamma-1Homo sapiens (human)
benzodiazepine receptor activityGamma-aminobutyric acid receptor subunit gamma-1Homo sapiens (human)
GABA-gated chloride ion channel activityGamma-aminobutyric acid receptor subunit gamma-1Homo sapiens (human)
chloride channel activityGamma-aminobutyric acid receptor subunit gamma-1Homo sapiens (human)
GABA-A receptor activityGamma-aminobutyric acid receptor subunit gamma-1Homo sapiens (human)
inositol-1,3,4,5,6-pentakisphosphate kinase activityInositol hexakisphosphate kinase 1Homo sapiens (human)
inositol hexakisphosphate kinase activityInositol hexakisphosphate kinase 1Homo sapiens (human)
inositol heptakisphosphate kinase activityInositol hexakisphosphate kinase 1Homo sapiens (human)
inositol hexakisphosphate 5-kinase activityInositol hexakisphosphate kinase 1Homo sapiens (human)
protein bindingInositol hexakisphosphate kinase 1Homo sapiens (human)
ATP bindingInositol hexakisphosphate kinase 1Homo sapiens (human)
inositol hexakisphosphate 1-kinase activityInositol hexakisphosphate kinase 1Homo sapiens (human)
inositol hexakisphosphate 3-kinase activityInositol hexakisphosphate kinase 1Homo sapiens (human)
inositol 5-diphosphate pentakisphosphate 5-kinase activityInositol hexakisphosphate kinase 1Homo sapiens (human)
inositol diphosphate tetrakisphosphate kinase activityInositol hexakisphosphate kinase 1Homo sapiens (human)
protein bindingCanalicular multispecific organic anion transporter 1Homo sapiens (human)
ATP bindingCanalicular multispecific organic anion transporter 1Homo sapiens (human)
organic anion transmembrane transporter activityCanalicular multispecific organic anion transporter 1Homo sapiens (human)
ABC-type xenobiotic transporter activityCanalicular multispecific organic anion transporter 1Homo sapiens (human)
bilirubin transmembrane transporter activityCanalicular multispecific organic anion transporter 1Homo sapiens (human)
ABC-type glutathione S-conjugate transporter activityCanalicular multispecific organic anion transporter 1Homo sapiens (human)
ATP hydrolysis activityCanalicular multispecific organic anion transporter 1Homo sapiens (human)
ATPase-coupled transmembrane transporter activityCanalicular multispecific organic anion transporter 1Homo sapiens (human)
xenobiotic transmembrane transporter activityCanalicular multispecific organic anion transporter 1Homo sapiens (human)
ATPase-coupled inorganic anion transmembrane transporter activityCanalicular multispecific organic anion transporter 1Homo sapiens (human)
ABC-type transporter activityCanalicular multispecific organic anion transporter 1Homo sapiens (human)
GABA-A receptor activityGamma-aminobutyric acid receptor subunit gamma-3Homo sapiens (human)
GABA-gated chloride ion channel activityGamma-aminobutyric acid receptor subunit gamma-3Homo sapiens (human)
transmitter-gated monoatomic ion channel activity involved in regulation of postsynaptic membrane potentialGamma-aminobutyric acid receptor subunit gamma-3Homo sapiens (human)
GABA-A receptor activityGamma-aminobutyric acid receptor subunit gamma-3Homo sapiens (human)
benzodiazepine receptor activityGamma-aminobutyric acid receptor subunit gamma-3Homo sapiens (human)
chloride channel activityGamma-aminobutyric acid receptor subunit gamma-3Homo sapiens (human)
histone H3K9me2/H3K9me3 demethylase activityLysine-specific demethylase 4CHomo sapiens (human)
zinc ion bindingLysine-specific demethylase 4CHomo sapiens (human)
enzyme bindingLysine-specific demethylase 4CHomo sapiens (human)
nuclear receptor coactivator activityLysine-specific demethylase 4CHomo sapiens (human)
histone demethylase activityLysine-specific demethylase 4CHomo sapiens (human)
histone H3K9 demethylase activityLysine-specific demethylase 4CHomo sapiens (human)
nuclear androgen receptor bindingLysine-specific demethylase 4CHomo sapiens (human)
histone H3K36 demethylase activityLysine-specific demethylase 4CHomo sapiens (human)
H3K9me3 modified histone bindingLysine-specific demethylase 4CHomo sapiens (human)
histone H3K9me2/H3K9me3 demethylase activityLysine-specific demethylase 4CHomo sapiens (human)
transmembrane signaling receptor activityGamma-aminobutyric acid receptor subunit thetaHomo sapiens (human)
GABA-A receptor activityGamma-aminobutyric acid receptor subunit thetaHomo sapiens (human)
neurotransmitter transmembrane transporter activityGamma-aminobutyric acid receptor subunit thetaHomo sapiens (human)
protein bindingGamma-aminobutyric acid receptor subunit thetaHomo sapiens (human)
GABA-gated chloride ion channel activityGamma-aminobutyric acid receptor subunit thetaHomo sapiens (human)
chloride channel activityGamma-aminobutyric acid receptor subunit thetaHomo sapiens (human)
neurotransmitter receptor activityGamma-aminobutyric acid receptor subunit thetaHomo sapiens (human)
[Information is prepared from geneontology information from the June-17-2024 release]

Ceullar Components (62)

Processvia Protein(s)Taxonomy
plasma membraneGamma-aminobutyric acid receptor subunit piHomo sapiens (human)
apical plasma membraneGamma-aminobutyric acid receptor subunit piHomo sapiens (human)
chloride channel complexGamma-aminobutyric acid receptor subunit piHomo sapiens (human)
GABA-A receptor complexGamma-aminobutyric acid receptor subunit piHomo sapiens (human)
neuron projectionGamma-aminobutyric acid receptor subunit piHomo sapiens (human)
transmembrane transporter complexGamma-aminobutyric acid receptor subunit piHomo sapiens (human)
synapseGamma-aminobutyric acid receptor subunit piHomo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit piHomo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit deltaHomo sapiens (human)
axonGamma-aminobutyric acid receptor subunit deltaHomo sapiens (human)
dendriteGamma-aminobutyric acid receptor subunit deltaHomo sapiens (human)
neuronal cell bodyGamma-aminobutyric acid receptor subunit deltaHomo sapiens (human)
postsynaptic membraneGamma-aminobutyric acid receptor subunit deltaHomo sapiens (human)
GABA-ergic synapseGamma-aminobutyric acid receptor subunit deltaHomo sapiens (human)
GABA-A receptor complexGamma-aminobutyric acid receptor subunit deltaHomo sapiens (human)
chloride channel complexGamma-aminobutyric acid receptor subunit deltaHomo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit deltaHomo sapiens (human)
synapseGamma-aminobutyric acid receptor subunit deltaHomo sapiens (human)
neuron projectionGamma-aminobutyric acid receptor subunit deltaHomo sapiens (human)
transmembrane transporter complexGamma-aminobutyric acid receptor subunit deltaHomo sapiens (human)
plasma membraneATP-binding cassette sub-family C member 3Homo sapiens (human)
basal plasma membraneATP-binding cassette sub-family C member 3Homo sapiens (human)
basolateral plasma membraneATP-binding cassette sub-family C member 3Homo sapiens (human)
membraneATP-binding cassette sub-family C member 3Homo sapiens (human)
nucleolusMultidrug resistance-associated protein 4Homo sapiens (human)
Golgi apparatusMultidrug resistance-associated protein 4Homo sapiens (human)
plasma membraneMultidrug resistance-associated protein 4Homo sapiens (human)
membraneMultidrug resistance-associated protein 4Homo sapiens (human)
basolateral plasma membraneMultidrug resistance-associated protein 4Homo sapiens (human)
apical plasma membraneMultidrug resistance-associated protein 4Homo sapiens (human)
platelet dense granule membraneMultidrug resistance-associated protein 4Homo sapiens (human)
external side of apical plasma membraneMultidrug resistance-associated protein 4Homo sapiens (human)
plasma membraneMultidrug resistance-associated protein 4Homo sapiens (human)
basolateral plasma membraneBile salt export pumpHomo sapiens (human)
Golgi membraneBile salt export pumpHomo sapiens (human)
endosomeBile salt export pumpHomo sapiens (human)
plasma membraneBile salt export pumpHomo sapiens (human)
cell surfaceBile salt export pumpHomo sapiens (human)
apical plasma membraneBile salt export pumpHomo sapiens (human)
intercellular canaliculusBile salt export pumpHomo sapiens (human)
intracellular canaliculusBile salt export pumpHomo sapiens (human)
recycling endosomeBile salt export pumpHomo sapiens (human)
recycling endosome membraneBile salt export pumpHomo sapiens (human)
extracellular exosomeBile salt export pumpHomo sapiens (human)
membraneBile salt export pumpHomo sapiens (human)
extracellular spaceInterferon betaHomo sapiens (human)
extracellular regionInterferon betaHomo sapiens (human)
Golgi membraneHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
endoplasmic reticulumHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
Golgi apparatusHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
plasma membraneHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
cell surfaceHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
ER to Golgi transport vesicle membraneHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
membraneHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
secretory granule membraneHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
phagocytic vesicle membraneHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
early endosome membraneHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
recycling endosome membraneHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
extracellular exosomeHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
lumenal side of endoplasmic reticulum membraneHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
MHC class I protein complexHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
extracellular spaceHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
external side of plasma membraneHLA class I histocompatibility antigen, B alpha chain Homo sapiens (human)
cytoplasmic vesicle membraneGamma-aminobutyric acid receptor subunit alpha-1Bos taurus (cattle)
postsynaptic specialization membraneGamma-aminobutyric acid receptor subunit alpha-1Bos taurus (cattle)
chloride channel complexGamma-aminobutyric acid receptor subunit alpha-1Bos taurus (cattle)
GABA-A receptor complexGamma-aminobutyric acid receptor subunit alpha-1Bos taurus (cattle)
plasma membraneGamma-aminobutyric acid receptor subunit beta-1Bos taurus (cattle)
postsynaptic membraneGamma-aminobutyric acid receptor subunit beta-1Bos taurus (cattle)
chloride channel complexGamma-aminobutyric acid receptor subunit beta-1Bos taurus (cattle)
GABA-A receptor complexGamma-aminobutyric acid receptor subunit beta-1Bos taurus (cattle)
cytoplasmic vesicle membraneGamma-aminobutyric acid receptor subunit alpha-2Bos taurus (cattle)
postsynaptic membraneGamma-aminobutyric acid receptor subunit alpha-2Bos taurus (cattle)
chloride channel complexGamma-aminobutyric acid receptor subunit alpha-2Bos taurus (cattle)
postsynaptic membraneGamma-aminobutyric acid receptor subunit alpha-3Bos taurus (cattle)
chloride channel complexGamma-aminobutyric acid receptor subunit alpha-3Bos taurus (cattle)
plasma membraneGamma-aminobutyric acid receptor subunit alpha-1Homo sapiens (human)
cytoplasmic vesicle membraneGamma-aminobutyric acid receptor subunit alpha-1Homo sapiens (human)
GABA-ergic synapseGamma-aminobutyric acid receptor subunit alpha-1Homo sapiens (human)
postsynaptic specialization membraneGamma-aminobutyric acid receptor subunit alpha-1Homo sapiens (human)
GABA-A receptor complexGamma-aminobutyric acid receptor subunit alpha-1Homo sapiens (human)
chloride channel complexGamma-aminobutyric acid receptor subunit alpha-1Homo sapiens (human)
GABA receptor complexGamma-aminobutyric acid receptor subunit alpha-1Homo sapiens (human)
dendrite membraneGamma-aminobutyric acid receptor subunit alpha-1Homo sapiens (human)
postsynapseGamma-aminobutyric acid receptor subunit alpha-1Homo sapiens (human)
synapseGamma-aminobutyric acid receptor subunit alpha-1Homo sapiens (human)
neuron projectionGamma-aminobutyric acid receptor subunit alpha-1Homo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit alpha-1Homo sapiens (human)
transmembrane transporter complexGamma-aminobutyric acid receptor subunit alpha-1Homo sapiens (human)
nuclear envelopeGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
dendriteGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
presynaptic active zone membraneGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
Schaffer collateral - CA1 synapseGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
GABA-ergic synapseGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
postsynaptic specialization membraneGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
chloride channel complexGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
GABA-A receptor complexGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
neuron projectionGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
synapseGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
transmembrane transporter complexGamma-aminobutyric acid receptor subunit beta-1Homo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit gamma-2Homo sapiens (human)
axonGamma-aminobutyric acid receptor subunit gamma-2Homo sapiens (human)
cytoplasmic vesicle membraneGamma-aminobutyric acid receptor subunit gamma-2Homo sapiens (human)
dendrite membraneGamma-aminobutyric acid receptor subunit gamma-2Homo sapiens (human)
GABA-ergic synapseGamma-aminobutyric acid receptor subunit gamma-2Homo sapiens (human)
postsynaptic specialization membraneGamma-aminobutyric acid receptor subunit gamma-2Homo sapiens (human)
GABA-A receptor complexGamma-aminobutyric acid receptor subunit gamma-2Homo sapiens (human)
chloride channel complexGamma-aminobutyric acid receptor subunit gamma-2Homo sapiens (human)
neuron projectionGamma-aminobutyric acid receptor subunit gamma-2Homo sapiens (human)
dendrite membraneGamma-aminobutyric acid receptor subunit gamma-2Homo sapiens (human)
synapseGamma-aminobutyric acid receptor subunit gamma-2Homo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit gamma-2Homo sapiens (human)
transmembrane transporter complexGamma-aminobutyric acid receptor subunit gamma-2Homo sapiens (human)
postsynapseGamma-aminobutyric acid receptor subunit gamma-2Homo sapiens (human)
postsynaptic membraneGamma-aminobutyric acid receptor subunit alpha-4Bos taurus (cattle)
chloride channel complexGamma-aminobutyric acid receptor subunit alpha-4Bos taurus (cattle)
plasma membraneGamma-aminobutyric acid receptor subunit gamma-2Bos taurus (cattle)
cytoplasmic vesicle membraneGamma-aminobutyric acid receptor subunit gamma-2Bos taurus (cattle)
postsynaptic specialization membraneGamma-aminobutyric acid receptor subunit gamma-2Bos taurus (cattle)
chloride channel complexGamma-aminobutyric acid receptor subunit gamma-2Bos taurus (cattle)
GABA-A receptor complexGamma-aminobutyric acid receptor subunit gamma-2Bos taurus (cattle)
plasma membraneGamma-aminobutyric acid receptor subunit beta-3Homo sapiens (human)
cytoplasmic vesicle membraneGamma-aminobutyric acid receptor subunit beta-3Homo sapiens (human)
postsynaptic specialization membraneGamma-aminobutyric acid receptor subunit beta-3Homo sapiens (human)
GABA-A receptor complexGamma-aminobutyric acid receptor subunit beta-3Homo sapiens (human)
chloride channel complexGamma-aminobutyric acid receptor subunit beta-3Homo sapiens (human)
neuron projectionGamma-aminobutyric acid receptor subunit beta-3Homo sapiens (human)
synapseGamma-aminobutyric acid receptor subunit beta-3Homo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit beta-3Homo sapiens (human)
transmembrane transporter complexGamma-aminobutyric acid receptor subunit beta-3Homo sapiens (human)
mitochondrionTranslocator proteinHomo sapiens (human)
mitochondrial outer membraneTranslocator proteinHomo sapiens (human)
cytosolTranslocator proteinHomo sapiens (human)
intracellular membrane-bounded organelleTranslocator proteinHomo sapiens (human)
extracellular exosomeTranslocator proteinHomo sapiens (human)
endoplasmic reticulumTranslocator proteinHomo sapiens (human)
membraneTranslocator proteinHomo sapiens (human)
nucleoplasmGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
cytosolGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
neuronal cell body membraneGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
presynaptic membraneGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
GABA-ergic synapseGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
postsynaptic specialization membraneGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
GABA-A receptor complexGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
chloride channel complexGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
postsynapseGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
transmembrane transporter complexGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
neuron projectionGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
dendrite membraneGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
synapseGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit alpha-5Homo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit alpha-3Homo sapiens (human)
postsynaptic membraneGamma-aminobutyric acid receptor subunit alpha-3Homo sapiens (human)
GABA-A receptor complexGamma-aminobutyric acid receptor subunit alpha-3Homo sapiens (human)
chloride channel complexGamma-aminobutyric acid receptor subunit alpha-3Homo sapiens (human)
neuron projectionGamma-aminobutyric acid receptor subunit alpha-3Homo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit alpha-3Homo sapiens (human)
dendrite membraneGamma-aminobutyric acid receptor subunit alpha-3Homo sapiens (human)
transmembrane transporter complexGamma-aminobutyric acid receptor subunit alpha-3Homo sapiens (human)
postsynapseGamma-aminobutyric acid receptor subunit alpha-3Homo sapiens (human)
synapseGamma-aminobutyric acid receptor subunit alpha-3Homo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit alpha-2Homo sapiens (human)
axonGamma-aminobutyric acid receptor subunit alpha-2Homo sapiens (human)
synaptic vesicle membraneGamma-aminobutyric acid receptor subunit alpha-2Homo sapiens (human)
neuronal cell bodyGamma-aminobutyric acid receptor subunit alpha-2Homo sapiens (human)
inhibitory synapseGamma-aminobutyric acid receptor subunit alpha-2Homo sapiens (human)
GABA-ergic synapseGamma-aminobutyric acid receptor subunit alpha-2Homo sapiens (human)
postsynaptic specialization membraneGamma-aminobutyric acid receptor subunit alpha-2Homo sapiens (human)
GABA-A receptor complexGamma-aminobutyric acid receptor subunit alpha-2Homo sapiens (human)
chloride channel complexGamma-aminobutyric acid receptor subunit alpha-2Homo sapiens (human)
postsynapseGamma-aminobutyric acid receptor subunit alpha-2Homo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit alpha-2Homo sapiens (human)
transmembrane transporter complexGamma-aminobutyric acid receptor subunit alpha-2Homo sapiens (human)
neuron projectionGamma-aminobutyric acid receptor subunit alpha-2Homo sapiens (human)
synapseGamma-aminobutyric acid receptor subunit alpha-2Homo sapiens (human)
dendrite membraneGamma-aminobutyric acid receptor subunit alpha-2Homo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit beta-2Homo sapiens (human)
cytoplasmic vesicle membraneGamma-aminobutyric acid receptor subunit beta-2Homo sapiens (human)
extracellular exosomeGamma-aminobutyric acid receptor subunit beta-2Homo sapiens (human)
GABA-ergic synapseGamma-aminobutyric acid receptor subunit beta-2Homo sapiens (human)
postsynaptic specialization membraneGamma-aminobutyric acid receptor subunit beta-2Homo sapiens (human)
GABA-A receptor complexGamma-aminobutyric acid receptor subunit beta-2Homo sapiens (human)
chloride channel complexGamma-aminobutyric acid receptor subunit beta-2Homo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit beta-2Homo sapiens (human)
synapseGamma-aminobutyric acid receptor subunit beta-2Homo sapiens (human)
neuron projectionGamma-aminobutyric acid receptor subunit beta-2Homo sapiens (human)
transmembrane transporter complexGamma-aminobutyric acid receptor subunit beta-2Homo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit alpha-4Homo sapiens (human)
GABA-ergic synapseGamma-aminobutyric acid receptor subunit alpha-4Homo sapiens (human)
postsynaptic specialization membraneGamma-aminobutyric acid receptor subunit alpha-4Homo sapiens (human)
GABA-A receptor complexGamma-aminobutyric acid receptor subunit alpha-4Homo sapiens (human)
chloride channel complexGamma-aminobutyric acid receptor subunit alpha-4Homo sapiens (human)
dendrite membraneGamma-aminobutyric acid receptor subunit alpha-4Homo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit alpha-4Homo sapiens (human)
postsynapseGamma-aminobutyric acid receptor subunit alpha-4Homo sapiens (human)
neuron projectionGamma-aminobutyric acid receptor subunit alpha-4Homo sapiens (human)
synapseGamma-aminobutyric acid receptor subunit alpha-4Homo sapiens (human)
transmembrane transporter complexGamma-aminobutyric acid receptor subunit alpha-4Homo sapiens (human)
postsynaptic membraneGamma-aminobutyric acid receptor subunit epsilonHomo sapiens (human)
chloride channel complexGamma-aminobutyric acid receptor subunit epsilonHomo sapiens (human)
GABA-A receptor complexGamma-aminobutyric acid receptor subunit epsilonHomo sapiens (human)
synapseGamma-aminobutyric acid receptor subunit epsilonHomo sapiens (human)
dendrite membraneGamma-aminobutyric acid receptor subunit epsilonHomo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit epsilonHomo sapiens (human)
neuron projectionGamma-aminobutyric acid receptor subunit epsilonHomo sapiens (human)
postsynapseGamma-aminobutyric acid receptor subunit epsilonHomo sapiens (human)
transmembrane transporter complexGamma-aminobutyric acid receptor subunit epsilonHomo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit alpha-6Homo sapiens (human)
cerebellar Golgi cell to granule cell synapseGamma-aminobutyric acid receptor subunit alpha-6Homo sapiens (human)
postsynaptic specialization membraneGamma-aminobutyric acid receptor subunit alpha-6Homo sapiens (human)
GABA-A receptor complexGamma-aminobutyric acid receptor subunit alpha-6Homo sapiens (human)
chloride channel complexGamma-aminobutyric acid receptor subunit alpha-6Homo sapiens (human)
postsynapseGamma-aminobutyric acid receptor subunit alpha-6Homo sapiens (human)
dendrite membraneGamma-aminobutyric acid receptor subunit alpha-6Homo sapiens (human)
transmembrane transporter complexGamma-aminobutyric acid receptor subunit alpha-6Homo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit alpha-6Homo sapiens (human)
synapseGamma-aminobutyric acid receptor subunit alpha-6Homo sapiens (human)
neuron projectionGamma-aminobutyric acid receptor subunit alpha-6Homo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit gamma-1Homo sapiens (human)
postsynaptic membraneGamma-aminobutyric acid receptor subunit gamma-1Homo sapiens (human)
chloride channel complexGamma-aminobutyric acid receptor subunit gamma-1Homo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit gamma-1Homo sapiens (human)
dendrite membraneGamma-aminobutyric acid receptor subunit gamma-1Homo sapiens (human)
GABA-A receptor complexGamma-aminobutyric acid receptor subunit gamma-1Homo sapiens (human)
synapseGamma-aminobutyric acid receptor subunit gamma-1Homo sapiens (human)
transmembrane transporter complexGamma-aminobutyric acid receptor subunit gamma-1Homo sapiens (human)
neuron projectionGamma-aminobutyric acid receptor subunit gamma-1Homo sapiens (human)
postsynapseGamma-aminobutyric acid receptor subunit gamma-1Homo sapiens (human)
fibrillar centerInositol hexakisphosphate kinase 1Homo sapiens (human)
nucleoplasmInositol hexakisphosphate kinase 1Homo sapiens (human)
cytosolInositol hexakisphosphate kinase 1Homo sapiens (human)
nucleusInositol hexakisphosphate kinase 1Homo sapiens (human)
cytoplasmInositol hexakisphosphate kinase 1Homo sapiens (human)
plasma membraneCanalicular multispecific organic anion transporter 1Homo sapiens (human)
cell surfaceCanalicular multispecific organic anion transporter 1Homo sapiens (human)
apical plasma membraneCanalicular multispecific organic anion transporter 1Homo sapiens (human)
intercellular canaliculusCanalicular multispecific organic anion transporter 1Homo sapiens (human)
apical plasma membraneCanalicular multispecific organic anion transporter 1Homo sapiens (human)
nucleolusGamma-aminobutyric acid receptor subunit gamma-3Homo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit gamma-3Homo sapiens (human)
microtubule cytoskeletonGamma-aminobutyric acid receptor subunit gamma-3Homo sapiens (human)
postsynaptic membraneGamma-aminobutyric acid receptor subunit gamma-3Homo sapiens (human)
GABA-ergic synapseGamma-aminobutyric acid receptor subunit gamma-3Homo sapiens (human)
chloride channel complexGamma-aminobutyric acid receptor subunit gamma-3Homo sapiens (human)
transmembrane transporter complexGamma-aminobutyric acid receptor subunit gamma-3Homo sapiens (human)
dendrite membraneGamma-aminobutyric acid receptor subunit gamma-3Homo sapiens (human)
synapseGamma-aminobutyric acid receptor subunit gamma-3Homo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit gamma-3Homo sapiens (human)
neuron projectionGamma-aminobutyric acid receptor subunit gamma-3Homo sapiens (human)
GABA-A receptor complexGamma-aminobutyric acid receptor subunit gamma-3Homo sapiens (human)
postsynapseGamma-aminobutyric acid receptor subunit gamma-3Homo sapiens (human)
nucleoplasmLysine-specific demethylase 4CHomo sapiens (human)
chromatinLysine-specific demethylase 4CHomo sapiens (human)
pericentric heterochromatinLysine-specific demethylase 4CHomo sapiens (human)
nucleusLysine-specific demethylase 4CHomo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit thetaHomo sapiens (human)
postsynaptic membraneGamma-aminobutyric acid receptor subunit thetaHomo sapiens (human)
chloride channel complexGamma-aminobutyric acid receptor subunit thetaHomo sapiens (human)
receptor complexGamma-aminobutyric acid receptor subunit thetaHomo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit thetaHomo sapiens (human)
neuron projectionGamma-aminobutyric acid receptor subunit thetaHomo sapiens (human)
transmembrane transporter complexGamma-aminobutyric acid receptor subunit thetaHomo sapiens (human)
synapseGamma-aminobutyric acid receptor subunit thetaHomo sapiens (human)
GABA-A receptor complexGamma-aminobutyric acid receptor subunit thetaHomo sapiens (human)
[Information is prepared from geneontology information from the June-17-2024 release]

Bioassays (131)

Assay IDTitleYearJournalArticle
AID227698Evaluation for the Anti-pentylenetetrazole effect.1990Journal of medicinal chemistry, Sep, Volume: 33, Issue:9
Neural networks applied to quantitative structure-activity relationship analysis.
AID588220Literature-mined public compounds from Kruhlak et al phospholipidosis modelling dataset2008Toxicology mechanisms and methods, , Volume: 18, Issue:2-3
Development of a phospholipidosis database and predictive quantitative structure-activity relationship (QSAR) models.
AID444050Fraction unbound in human plasma2010Journal of medicinal chemistry, Feb-11, Volume: 53, Issue:3
Physicochemical space for optimum oral bioavailability: contribution of human intestinal absorption and first-pass elimination.
AID227699Virtual screen for compounds with anticonvulsant activity2003Bioorganic & medicinal chemistry letters, Aug-18, Volume: 13, Issue:16
Topological virtual screening: a way to find new anticonvulsant drugs from chemical diversity.
AID625289Drug Induced Liver Injury Prediction System (DILIps) training set; hepatic side effect (HepSE) score for liver disease2011PLoS computational biology, Dec, Volume: 7, Issue:12
Translating clinical findings into knowledge in drug safety evaluation--drug induced liver injury prediction system (DILIps).
AID311524Oral bioavailability in human2007Bioorganic & medicinal chemistry, Dec-15, Volume: 15, Issue:24
Hologram QSAR model for the prediction of human oral bioavailability.
AID13305-Log C was determined by performing the foot shock test1980Journal of medicinal chemistry, Apr, Volume: 23, Issue:4
Decomposition of pharmacological activity indices into mutually independent components using principal component analysis.
AID625291Drug Induced Liver Injury Prediction System (DILIps) training set; hepatic side effect (HepSE) score for liver function tests abnormal2011PLoS computational biology, Dec, Volume: 7, Issue:12
Translating clinical findings into knowledge in drug safety evaluation--drug induced liver injury prediction system (DILIps).
AID13308-Log C was determined by performing the pentylenetetrazole test1980Journal of medicinal chemistry, Apr, Volume: 23, Issue:4
Decomposition of pharmacological activity indices into mutually independent components using principal component analysis.
AID194135ED50 value was reported as log1/C, which is the concentration that would decrease to a half the lever pressing in 50% of rats for the non punished schedule; ND means no data1980Journal of medicinal chemistry, Feb, Volume: 23, Issue:2
Rm values and structure-activity relationship of benzodiazepines.
AID444051Total clearance in human2010Journal of medicinal chemistry, Feb-11, Volume: 53, Issue:3
Physicochemical space for optimum oral bioavailability: contribution of human intestinal absorption and first-pass elimination.
AID540210Clearance in human after iv administration2008Drug metabolism and disposition: the biological fate of chemicals, Jul, Volume: 36, Issue:7
Trend analysis of a database of intravenous pharmacokinetic parameters in humans for 670 drug compounds.
AID1473740Inhibition of human MRP3 overexpressed in Sf9 insect cell membrane vesicles assessed as uptake of [3H]-estradiol-17beta-D-glucuronide in presence of ATP and GSH measured after 10 mins by membrane vesicle transport assay2013Toxicological sciences : an official journal of the Society of Toxicology, Nov, Volume: 136, Issue:1
A multifactorial approach to hepatobiliary transporter assessment enables improved therapeutic compound development.
AID194133ED50 value was reported as log1/C, which is the concentration that caused fourfold increase of lever pressing in 50% of rats for the punished schedule; ND means no data1980Journal of medicinal chemistry, Feb, Volume: 23, Issue:2
Rm values and structure-activity relationship of benzodiazepines.
AID1150165Muscle relaxant activity in cat suspended by scruff of neck assessed as relaxation of body and hind legs1977Journal of medicinal chemistry, Sep, Volume: 20, Issue:9
Electronic factors in the structure-activity relationship of some 1,4-benzodiazepin-2-ones.
AID1529185Protein binding in human serum albumin after 4.5 hrs by LC-MS based rapid equilibrium dialysis method2020Journal of medicinal chemistry, 02-27, Volume: 63, Issue:4
Human Serum Albumin Binding in a Vial: A Novel UV-pH Titration Method To Assist Drug Design.
AID13304-Log C was determined by performing the electroshock minimum test1980Journal of medicinal chemistry, Apr, Volume: 23, Issue:4
Decomposition of pharmacological activity indices into mutually independent components using principal component analysis.
AID625279Drug Induced Liver Injury Prediction System (DILIps) training set; hepatic side effect (HepSE) score for bilirubinemia2011PLoS computational biology, Dec, Volume: 7, Issue:12
Translating clinical findings into knowledge in drug safety evaluation--drug induced liver injury prediction system (DILIps).
AID1149718Acute toxicity in ip dosed Wistar rat measured 2 hrs post dose1977Journal of medicinal chemistry, Jul, Volume: 20, Issue:7
Synthesis and central nervous system evaluation of some 5-alkoxy-3H-1,4-benzodiazepin-2(1H)-ones.
AID679757TP_TRANSPORTER: increase in Calcein-AM intracellular accumulation (Calcein-AM: ? uM, Nitrazepam: 100 uM) in MDR1-expressing MDCKII cells2002The Journal of pharmacology and experimental therapeutics, Dec, Volume: 303, Issue:3
Passive permeability and P-glycoprotein-mediated efflux differentiate central nervous system (CNS) and non-CNS marketed drugs.
AID22293Delta logD (logD6.5 - logD7.4)2000Journal of medicinal chemistry, Jun-29, Volume: 43, Issue:13
QSAR model for drug human oral bioavailability.
AID625285Drug Induced Liver Injury Prediction System (DILIps) training set; hepatic side effect (HepSE) score for hepatic necrosis2011PLoS computational biology, Dec, Volume: 7, Issue:12
Translating clinical findings into knowledge in drug safety evaluation--drug induced liver injury prediction system (DILIps).
AID128035Antagonism of pentylenetetrazole-induced convulsion in mice by oral administration.1981Journal of medicinal chemistry, Jan, Volume: 24, Issue:1
Novel peptidoaminobenzophenones, terminal N-substituted peptidoaminobenzophenones, and N-(acylglycyl)aminobenzophenones as open-ring derivatives of benzodiazepines.
AID625287Drug Induced Liver Injury Prediction System (DILIps) training set; hepatic side effect (HepSE) score for hepatomegaly2011PLoS computational biology, Dec, Volume: 7, Issue:12
Translating clinical findings into knowledge in drug safety evaluation--drug induced liver injury prediction system (DILIps).
AID346025Binding affinity to beta cyclodextrin2009Bioorganic & medicinal chemistry, Jan-15, Volume: 17, Issue:2
Convenient QSAR model for predicting the complexation of structurally diverse compounds with beta-cyclodextrins.
AID625284Drug Induced Liver Injury Prediction System (DILIps) training set; hepatic side effect (HepSE) score for hepatic failure2011PLoS computational biology, Dec, Volume: 7, Issue:12
Translating clinical findings into knowledge in drug safety evaluation--drug induced liver injury prediction system (DILIps).
AID681116TP_TRANSPORTER: transepithelial transport (basal to apical) in MDR1-expressing MDCKII cells2002The Journal of pharmacology and experimental therapeutics, Dec, Volume: 303, Issue:3
Passive permeability and P-glycoprotein-mediated efflux differentiate central nervous system (CNS) and non-CNS marketed drugs.
AID1149730CNS depressant activity in ip dosed mouse assessed as reinduction of anesthesia measured as loss of righting reflex compound administered immediately post recovery from hexobarbital anesthesia1977Journal of medicinal chemistry, Jul, Volume: 20, Issue:7
Synthesis and central nervous system evaluation of some 5-alkoxy-3H-1,4-benzodiazepin-2(1H)-ones.
AID1529187Binding affinity to human serum albumin assessed as change in dissociation constant pKa2 of compound in aqueous medium to presence of human serum albumin by UV-pH titration based spectrophotometric analysis2020Journal of medicinal chemistry, 02-27, Volume: 63, Issue:4
Human Serum Albumin Binding in a Vial: A Novel UV-pH Titration Method To Assist Drug Design.
AID29360Ionization constant (pKa)2000Journal of medicinal chemistry, Jun-29, Volume: 43, Issue:13
QSAR model for drug human oral bioavailability.
AID1149719CNS depressant activity in ip dosed mouse assessed as ataxia1977Journal of medicinal chemistry, Jul, Volume: 20, Issue:7
Synthesis and central nervous system evaluation of some 5-alkoxy-3H-1,4-benzodiazepin-2(1H)-ones.
AID444056Fraction escaping gut-wall elimination in human2010Journal of medicinal chemistry, Feb-11, Volume: 53, Issue:3
Physicochemical space for optimum oral bioavailability: contribution of human intestinal absorption and first-pass elimination.
AID40995Binding affinity towards benzodiazepine/GABA A receptor.1995Journal of medicinal chemistry, Feb-17, Volume: 38, Issue:4
Prediction of receptor properties and binding affinity of ligands to benzodiazepine/GABAA receptors using artificial neural networks.
AID139100Logarithm of effective dose evaluated using the foot-shock test in mice1983Journal of medicinal chemistry, Aug, Volume: 26, Issue:8
Quantitative structure-activity relationships employing independent quantum chemical indices.
AID444052Hepatic clearance in human2010Journal of medicinal chemistry, Feb-11, Volume: 53, Issue:3
Physicochemical space for optimum oral bioavailability: contribution of human intestinal absorption and first-pass elimination.
AID603955In-vivo blood to lung partition coefficients of the compound, logP(lung) in rat2008European journal of medicinal chemistry, Mar, Volume: 43, Issue:3
Air to lung partition coefficients for volatile organic compounds and blood to lung partition coefficients for volatile organic compounds and drugs.
AID625286Drug Induced Liver Injury Prediction System (DILIps) training set; hepatic side effect (HepSE) score for hepatitis2011PLoS computational biology, Dec, Volume: 7, Issue:12
Translating clinical findings into knowledge in drug safety evaluation--drug induced liver injury prediction system (DILIps).
AID1150164Anticonvulsion activity in mouse assessed as protection against pentylenetetrazole-induced convulsion1977Journal of medicinal chemistry, Sep, Volume: 20, Issue:9
Electronic factors in the structure-activity relationship of some 1,4-benzodiazepin-2-ones.
AID1149729CNS depressant activity in ip dosed mouse assessed as induction of neurologic deficit by rotarod test1977Journal of medicinal chemistry, Jul, Volume: 20, Issue:7
Synthesis and central nervous system evaluation of some 5-alkoxy-3H-1,4-benzodiazepin-2(1H)-ones.
AID444053Renal clearance in human2010Journal of medicinal chemistry, Feb-11, Volume: 53, Issue:3
Physicochemical space for optimum oral bioavailability: contribution of human intestinal absorption and first-pass elimination.
AID1443980Inhibition of human BSEP expressed in fall armyworm sf9 cell plasma membrane vesicles assessed as reduction in vesicle-associated [3H]-taurocholate transport preincubated for 10 mins prior to ATP addition measured after 15 mins in presence of [3H]-tauroch2010Toxicological sciences : an official journal of the Society of Toxicology, Dec, Volume: 118, Issue:2
Interference with bile salt export pump function is a susceptibility factor for human liver injury in drug development.
AID26304Partition coefficient (logD6.5)2000Journal of medicinal chemistry, Jun-29, Volume: 43, Issue:13
QSAR model for drug human oral bioavailability.
AID540211Fraction unbound in human after iv administration2008Drug metabolism and disposition: the biological fate of chemicals, Jul, Volume: 36, Issue:7
Trend analysis of a database of intravenous pharmacokinetic parameters in humans for 670 drug compounds.
AID540213Half life in human after iv administration2008Drug metabolism and disposition: the biological fate of chemicals, Jul, Volume: 36, Issue:7
Trend analysis of a database of intravenous pharmacokinetic parameters in humans for 670 drug compounds.
AID1149728CNS depressant activity in mouse assessed as reduction in amphetamine-induced locomotor activity at 1.5 mg/kg, ip1977Journal of medicinal chemistry, Jul, Volume: 20, Issue:7
Synthesis and central nervous system evaluation of some 5-alkoxy-3H-1,4-benzodiazepin-2(1H)-ones.
AID540212Mean residence time in human after iv administration2008Drug metabolism and disposition: the biological fate of chemicals, Jul, Volume: 36, Issue:7
Trend analysis of a database of intravenous pharmacokinetic parameters in humans for 670 drug compounds.
AID1529184Protein binding in immobilized human serum albumin by HPLC analysis2020Journal of medicinal chemistry, 02-27, Volume: 63, Issue:4
Human Serum Albumin Binding in a Vial: A Novel UV-pH Titration Method To Assist Drug Design.
AID425653Renal clearance in human2009Journal of medicinal chemistry, Aug-13, Volume: 52, Issue:15
Physicochemical determinants of human renal clearance.
AID625283Drug Induced Liver Injury Prediction System (DILIps) training set; hepatic side effect (HepSE) score for elevated liver function tests2011PLoS computational biology, Dec, Volume: 7, Issue:12
Translating clinical findings into knowledge in drug safety evaluation--drug induced liver injury prediction system (DILIps).
AID625280Drug Induced Liver Injury Prediction System (DILIps) training set; hepatic side effect (HepSE) score for cholecystitis2011PLoS computational biology, Dec, Volume: 7, Issue:12
Translating clinical findings into knowledge in drug safety evaluation--drug induced liver injury prediction system (DILIps).
AID194131ED50 value was reported as log1/C, which is the concentration required to reduce locomotor activity by 50% in rats1980Journal of medicinal chemistry, Feb, Volume: 23, Issue:2
Rm values and structure-activity relationship of benzodiazepines.
AID1149721CNS depressant activity in ip dosed mouse assessed as loss of righting reflex1977Journal of medicinal chemistry, Jul, Volume: 20, Issue:7
Synthesis and central nervous system evaluation of some 5-alkoxy-3H-1,4-benzodiazepin-2(1H)-ones.
AID588211Literature-mined compound from Fourches et al multi-species drug-induced liver injury (DILI) dataset, effect in humans2010Chemical research in toxicology, Jan, Volume: 23, Issue:1
Cheminformatics analysis of assertions mined from literature that describe drug-induced liver injury in different species.
AID131235Muscle relaxation activity using the rotarod performance test in mice by oral administration.1981Journal of medicinal chemistry, Jan, Volume: 24, Issue:1
Novel peptidoaminobenzophenones, terminal N-substituted peptidoaminobenzophenones, and N-(acylglycyl)aminobenzophenones as open-ring derivatives of benzodiazepines.
AID29811Oral bioavailability in human2000Journal of medicinal chemistry, Jun-29, Volume: 43, Issue:13
QSAR model for drug human oral bioavailability.
AID13307-Log C was determined by performing the maximum electroshock test1980Journal of medicinal chemistry, Apr, Volume: 23, Issue:4
Decomposition of pharmacological activity indices into mutually independent components using principal component analysis.
AID678707Inhibition of KDM4C catalytic core-mediated demethylation of ARK(Me)3STGGK after 30 mins by FDH-coupled assay2012Bioorganic & medicinal chemistry letters, Sep-15, Volume: 22, Issue:18
Inhibitor scaffold for the histone lysine demethylase KDM4C (JMJD2C).
AID444058Volume of distribution at steady state in human2010Journal of medicinal chemistry, Feb-11, Volume: 53, Issue:3
Physicochemical space for optimum oral bioavailability: contribution of human intestinal absorption and first-pass elimination.
AID625290Drug Induced Liver Injury Prediction System (DILIps) training set; hepatic side effect (HepSE) score for liver fatty2011PLoS computational biology, Dec, Volume: 7, Issue:12
Translating clinical findings into knowledge in drug safety evaluation--drug induced liver injury prediction system (DILIps).
AID588213Literature-mined compound from Fourches et al multi-species drug-induced liver injury (DILI) dataset, effect in non-rodents2010Chemical research in toxicology, Jan, Volume: 23, Issue:1
Cheminformatics analysis of assertions mined from literature that describe drug-induced liver injury in different species.
AID425652Total body clearance in human2009Journal of medicinal chemistry, Aug-13, Volume: 52, Issue:15
Physicochemical determinants of human renal clearance.
AID1150161Sedative activity in mouse1977Journal of medicinal chemistry, Sep, Volume: 20, Issue:9
Electronic factors in the structure-activity relationship of some 1,4-benzodiazepin-2-ones.
AID444055Fraction absorbed in human2010Journal of medicinal chemistry, Feb-11, Volume: 53, Issue:3
Physicochemical space for optimum oral bioavailability: contribution of human intestinal absorption and first-pass elimination.
AID1150163Taming activity in mouse assessed as suppression of electrical current-induced aggressive behavior by foot-shock test1977Journal of medicinal chemistry, Sep, Volume: 20, Issue:9
Electronic factors in the structure-activity relationship of some 1,4-benzodiazepin-2-ones.
AID1529186Binding affinity to human serum albumin assessed as change in dissociation constant pKa1 of compound in aqueous medium to presence of human serum albumin by UV-pH titration based spectrophotometric analysis2020Journal of medicinal chemistry, 02-27, Volume: 63, Issue:4
Human Serum Albumin Binding in a Vial: A Novel UV-pH Titration Method To Assist Drug Design.
AID1149722Anticonvulsant activity in ip dosed mouse assessed as inhibition of N-sulfamoylhexahydroazepine-induced seizure1977Journal of medicinal chemistry, Jul, Volume: 20, Issue:7
Synthesis and central nervous system evaluation of some 5-alkoxy-3H-1,4-benzodiazepin-2(1H)-ones.
AID41996Inhibition of [3H]flunitrazepam binding to GABA-A central Benzodiazepine receptor of bovine brain membranes1985Journal of medicinal chemistry, Apr, Volume: 28, Issue:4
Specific inhibition of benzodiazepine receptor binding by some N-(indol-3-ylglyoxylyl)amino acid derivatives.
AID625288Drug Induced Liver Injury Prediction System (DILIps) training set; hepatic side effect (HepSE) score for jaundice2011PLoS computational biology, Dec, Volume: 7, Issue:12
Translating clinical findings into knowledge in drug safety evaluation--drug induced liver injury prediction system (DILIps).
AID227697Compound was evaluated for the Anti-fighting behavior.1990Journal of medicinal chemistry, Sep, Volume: 33, Issue:9
Neural networks applied to quantitative structure-activity relationship analysis.
AID625281Drug Induced Liver Injury Prediction System (DILIps) training set; hepatic side effect (HepSE) score for cholelithiasis2011PLoS computational biology, Dec, Volume: 7, Issue:12
Translating clinical findings into knowledge in drug safety evaluation--drug induced liver injury prediction system (DILIps).
AID444054Oral bioavailability in human2010Journal of medicinal chemistry, Feb-11, Volume: 53, Issue:3
Physicochemical space for optimum oral bioavailability: contribution of human intestinal absorption and first-pass elimination.
AID540209Volume of distribution at steady state in human after iv administration2008Drug metabolism and disposition: the biological fate of chemicals, Jul, Volume: 36, Issue:7
Trend analysis of a database of intravenous pharmacokinetic parameters in humans for 670 drug compounds.
AID444057Fraction escaping hepatic elimination in human2010Journal of medicinal chemistry, Feb-11, Volume: 53, Issue:3
Physicochemical space for optimum oral bioavailability: contribution of human intestinal absorption and first-pass elimination.
AID1150162Muscle relaxant activity in mouse1977Journal of medicinal chemistry, Sep, Volume: 20, Issue:9
Electronic factors in the structure-activity relationship of some 1,4-benzodiazepin-2-ones.
AID1473741Inhibition of human MRP4 overexpressed in Sf9 cell membrane vesicles assessed as uptake of [3H]-estradiol-17beta-D-glucuronide in presence of ATP and GSH measured after 20 mins by membrane vesicle transport assay2013Toxicological sciences : an official journal of the Society of Toxicology, Nov, Volume: 136, Issue:1
A multifactorial approach to hepatobiliary transporter assessment enables improved therapeutic compound development.
AID13306-Log C was determined by performing the incl screen test1980Journal of medicinal chemistry, Apr, Volume: 23, Issue:4
Decomposition of pharmacological activity indices into mutually independent components using principal component analysis.
AID1149720CNS depressant activity in ip dosed mouse assessed as docility1977Journal of medicinal chemistry, Jul, Volume: 20, Issue:7
Synthesis and central nervous system evaluation of some 5-alkoxy-3H-1,4-benzodiazepin-2(1H)-ones.
AID23479Partition coefficient (logP)1980Journal of medicinal chemistry, Feb, Volume: 23, Issue:2
Rm values and structure-activity relationship of benzodiazepines.
AID40987Binding affinity of compound towards Benzodiazepine receptor in a competition assay1996Journal of medicinal chemistry, Dec-20, Volume: 39, Issue:26
Genetic neural networks for quantitative structure-activity relationships: improvements and application of benzodiazepine affinity for benzodiazepine/GABAA receptors.
AID625292Drug Induced Liver Injury Prediction System (DILIps) training set; hepatic side effect (HepSE) combined score2011PLoS computational biology, Dec, Volume: 7, Issue:12
Translating clinical findings into knowledge in drug safety evaluation--drug induced liver injury prediction system (DILIps).
AID588212Literature-mined compound from Fourches et al multi-species drug-induced liver injury (DILI) dataset, effect in rodents2010Chemical research in toxicology, Jan, Volume: 23, Issue:1
Cheminformatics analysis of assertions mined from literature that describe drug-induced liver injury in different species.
AID1473738Inhibition of human BSEP overexpressed in Sf9 cell membrane vesicles assessed as uptake of [3H]-taurocholate in presence of ATP measured after 15 to 20 mins by membrane vesicle transport assay2013Toxicological sciences : an official journal of the Society of Toxicology, Nov, Volume: 136, Issue:1
A multifactorial approach to hepatobiliary transporter assessment enables improved therapeutic compound development.
AID1473739Inhibition of human MRP2 overexpressed in Sf9 cell membrane vesicles assessed as uptake of [3H]-estradiol-17beta-D-glucuronide in presence of ATP and GSH measured after 20 mins by membrane vesicle transport assay2013Toxicological sciences : an official journal of the Society of Toxicology, Nov, Volume: 136, Issue:1
A multifactorial approach to hepatobiliary transporter assessment enables improved therapeutic compound development.
AID625282Drug Induced Liver Injury Prediction System (DILIps) training set; hepatic side effect (HepSE) score for cirrhosis2011PLoS computational biology, Dec, Volume: 7, Issue:12
Translating clinical findings into knowledge in drug safety evaluation--drug induced liver injury prediction system (DILIps).
AID228469Evaluation of inclined screen test.1990Journal of medicinal chemistry, Sep, Volume: 33, Issue:9
Neural networks applied to quantitative structure-activity relationship analysis.
AID1347097qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for Saos-2 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347099qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for NB1643 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID651635Viability Counterscreen for Primary qHTS for Inhibitors of ATXN expression
AID1347098qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for SK-N-SH cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347086qHTS for Inhibitors of the Functional Ribonucleoprotein Complex (vRNP) of Lymphocytic Choriomeningitis Arenaviruses (LCMV): LCMV Primary Screen - GLuc reporter signal2020Antiviral research, 01, Volume: 173A cell-based, infectious-free, platform to identify inhibitors of lassa virus ribonucleoprotein (vRNP) activity.
AID1347425Rhodamine-PBP qHTS Assay for Modulators of WT P53-Induced Phosphatase 1 (WIP1)2019The Journal of biological chemistry, 11-15, Volume: 294, Issue:46
Physiologically relevant orthogonal assays for the discovery of small-molecule modulators of WIP1 phosphatase in high-throughput screens.
AID1347101qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for BT-12 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1296008Cytotoxic Profiling of Annotated Libraries Using Quantitative High-Throughput Screening2020SLAS discovery : advancing life sciences R & D, 01, Volume: 25, Issue:1
Cytotoxic Profiling of Annotated and Diverse Chemical Libraries Using Quantitative High-Throughput Screening.
AID1347424RapidFire Mass Spectrometry qHTS Assay for Modulators of WT P53-Induced Phosphatase 1 (WIP1)2019The Journal of biological chemistry, 11-15, Volume: 294, Issue:46
Physiologically relevant orthogonal assays for the discovery of small-molecule modulators of WIP1 phosphatase in high-throughput screens.
AID1347091qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for SJ-GBM2 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347094qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for BT-37 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347103qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for OHS-50 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347108qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for Rh41 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347095qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for NB-EBc1 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347104qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for RD cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347082qHTS for Inhibitors of the Functional Ribonucleoprotein Complex (vRNP) of Lassa (LASV) Arenavirus: LASV Primary Screen - GLuc reporter signal2020Antiviral research, 01, Volume: 173A cell-based, infectious-free, platform to identify inhibitors of lassa virus ribonucleoprotein (vRNP) activity.
AID1347100qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for LAN-5 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347089qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for TC32 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347083qHTS for Inhibitors of the Functional Ribonucleoprotein Complex (vRNP) of Lassa (LASV) Arenavirus: Viability assay - alamar blue signal for LASV Primary Screen2020Antiviral research, 01, Volume: 173A cell-based, infectious-free, platform to identify inhibitors of lassa virus ribonucleoprotein (vRNP) activity.
AID1347154Primary screen GU AMC qHTS for Zika virus inhibitors2020Proceedings of the National Academy of Sciences of the United States of America, 12-08, Volume: 117, Issue:49
Therapeutic candidates for the Zika virus identified by a high-throughput screen for Zika protease inhibitors.
AID1745845Primary qHTS for Inhibitors of ATXN expression
AID1347105qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for MG 63 (6-TG R) cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1508630Primary qHTS for small molecule stabilizers of the endoplasmic reticulum resident proteome: Secreted ER Calcium Modulated Protein (SERCaMP) assay2021Cell reports, 04-27, Volume: 35, Issue:4
A target-agnostic screen identifies approved drugs to stabilize the endoplasmic reticulum-resident proteome.
AID1347093qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for SK-N-MC cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347407qHTS to identify inhibitors of the type 1 interferon - major histocompatibility complex class I in skeletal muscle: primary screen against the NCATS Pharmaceutical Collection2020ACS chemical biology, 07-17, Volume: 15, Issue:7
High-Throughput Screening to Identify Inhibitors of the Type I Interferon-Major Histocompatibility Complex Class I Pathway in Skeletal Muscle.
AID1347102qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for Rh18 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347106qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for control Hh wild type fibroblast cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347107qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for Rh30 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347090qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for DAOY cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347096qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for U-2 OS cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347092qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for A673 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID588499High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Botulinum neurotoxin light chain A protease, MLPCN compound set2010Current protocols in cytometry, Oct, Volume: Chapter 13Microsphere-based flow cytometry protease assays for use in protease activity detection and high-throughput screening.
AID588499High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Botulinum neurotoxin light chain A protease, MLPCN compound set2006Cytometry. Part A : the journal of the International Society for Analytical Cytology, May, Volume: 69, Issue:5
Microsphere-based protease assays and screening application for lethal factor and factor Xa.
AID588499High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Botulinum neurotoxin light chain A protease, MLPCN compound set2010Assay and drug development technologies, Feb, Volume: 8, Issue:1
High-throughput multiplex flow cytometry screening for botulinum neurotoxin type a light chain protease inhibitors.
AID504810Antagonists of the Thyroid Stimulating Hormone Receptor: HTS campaign2010Endocrinology, Jul, Volume: 151, Issue:7
A small molecule inverse agonist for the human thyroid-stimulating hormone receptor.
AID504812Inverse Agonists of the Thyroid Stimulating Hormone Receptor: HTS campaign2010Endocrinology, Jul, Volume: 151, Issue:7
A small molecule inverse agonist for the human thyroid-stimulating hormone receptor.
AID588497High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Botulinum neurotoxin light chain F protease, MLPCN compound set2010Current protocols in cytometry, Oct, Volume: Chapter 13Microsphere-based flow cytometry protease assays for use in protease activity detection and high-throughput screening.
AID588497High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Botulinum neurotoxin light chain F protease, MLPCN compound set2006Cytometry. Part A : the journal of the International Society for Analytical Cytology, May, Volume: 69, Issue:5
Microsphere-based protease assays and screening application for lethal factor and factor Xa.
AID588497High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Botulinum neurotoxin light chain F protease, MLPCN compound set2010Assay and drug development technologies, Feb, Volume: 8, Issue:1
High-throughput multiplex flow cytometry screening for botulinum neurotoxin type a light chain protease inhibitors.
AID588501High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Lethal Factor Protease, MLPCN compound set2010Current protocols in cytometry, Oct, Volume: Chapter 13Microsphere-based flow cytometry protease assays for use in protease activity detection and high-throughput screening.
AID588501High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Lethal Factor Protease, MLPCN compound set2006Cytometry. Part A : the journal of the International Society for Analytical Cytology, May, Volume: 69, Issue:5
Microsphere-based protease assays and screening application for lethal factor and factor Xa.
AID588501High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Lethal Factor Protease, MLPCN compound set2010Assay and drug development technologies, Feb, Volume: 8, Issue:1
High-throughput multiplex flow cytometry screening for botulinum neurotoxin type a light chain protease inhibitors.
AID504749qHTS profiling for inhibitors of Plasmodium falciparum proliferation2011Science (New York, N.Y.), Aug-05, Volume: 333, Issue:6043
Chemical genomic profiling for antimalarial therapies, response signatures, and molecular targets.
AID1346986P-glycoprotein substrates identified in KB-3-1 adenocarcinoma cell line, qHTS therapeutic library screen2019Molecular pharmacology, 11, Volume: 96, Issue:5
A High-Throughput Screen of a Library of Therapeutics Identifies Cytotoxic Substrates of P-glycoprotein.
AID1346987P-glycoprotein substrates identified in KB-8-5-11 adenocarcinoma cell line, qHTS therapeutic library screen2019Molecular pharmacology, 11, Volume: 96, Issue:5
A High-Throughput Screen of a Library of Therapeutics Identifies Cytotoxic Substrates of P-glycoprotein.
AID1159607Screen for inhibitors of RMI FANCM (MM2) intereaction2016Journal of biomolecular screening, Jul, Volume: 21, Issue:6
A High-Throughput Screening Strategy to Identify Protein-Protein Interaction Inhibitors That Block the Fanconi Anemia DNA Repair Pathway.
[information is prepared from bioassay data collected from National Library of Medicine (NLM), extracted Dec-2023]

Research

Studies (748)

TimeframeStudies, This Drug (%)All Drugs %
pre-1990547 (73.13)18.7374
1990's88 (11.76)18.2507
2000's53 (7.09)29.6817
2010's42 (5.61)24.3611
2020's18 (2.41)2.80
[information is prepared from research data collected from National Library of Medicine (NLM), extracted Dec-2023]

Market Indicators

Research Demand Index: 84.31

According to the monthly volume, diversity, and competition of internet searches for this compound, as well the volume and growth of publications, there is estimated to be very strong demand-to-supply ratio for research on this compound.

MetricThis Compound (vs All)
Research Demand Index84.31 (24.57)
Research Supply Index6.89 (2.92)
Research Growth Index4.31 (4.65)
Search Engine Demand Index152.83 (26.88)
Search Engine Supply Index2.00 (0.95)

This Compound (84.31)

All Compounds (24.57)

Study Types

Publication TypeThis drug (%)All Drugs (%)
Trials154 (18.60%)5.53%
Reviews33 (3.99%)6.00%
Case Studies62 (7.49%)4.05%
Observational1 (0.12%)0.25%
Other578 (69.81%)84.16%
[information is prepared from research data collected from National Library of Medicine (NLM), extracted Dec-2023]

Clinical Trials (5)

Trial Overview

TrialPhaseEnrollmentStudy TypeStart DateStatus
A Randomised Controlled Trial of the Ketogenic Diet in the Treatment of Epilepsy in Children Under the Age of Two Years [NCT02205931]Phase 4160 participants (Anticipated)Interventional2015-01-31Recruiting
[NCT00004758]Phase 230 participants Interventional1993-11-30Completed
FK199B (Zolpidem MR Tablet) Phase III Clinical Study -A Double-Blind, Placebo- and Nitrazepam-Controlled, Group-Comparison Study in Patients With Insomnia Associated With Schizophrenia and Manic-Depressive Psychosis [NCT00374777]Phase 3450 participants (Actual)Interventional2006-08-31Completed
SeRenade Parent-Child Music Class Program for Families of Children With and Without ASD [NCT03560297]70 participants (Actual)Interventional2018-05-15Completed
Pharmacovigilance in Gerontopsychiatric Patients [NCT02374567]Phase 3407 participants (Actual)Interventional2015-01-31Terminated
[information is prepared from clinicaltrials.gov, extracted Sep-2024]